Nilmadhab Roy | Chemistry | Best Scholar Award

Mr. Nilmadhab Roy | Chemistry | Best Scholar Award

Vellore Institute of Technology | India

Nilmadhab Roy is an emerging researcher in the field of bioinorganic and medicinal chemistry, recognized for his innovative work on metal-based therapeutic agents. He obtained his Master of Science (M.Sc.) in Physical Chemistry from Vidyasagar University in 2014 and successfully qualified for the prestigious All-India GATE examination in 2015. Pursuing his passion for interdisciplinary research, he began his Ph.D. at VIT, Vellore, under the supervision of Dr. Priyankar Paira, MRSC, where he explored the design and synthesis of mitochondria-targeting Ru(II), Ir(III), and Re(I)-based half-sandwich and cyclometallated complexes for chemodynamic therapy. His research bridges coordination chemistry, photochemistry, and cancer therapeutics, focusing on developing metal complexes that selectively target cellular organelles to induce oxidative stress and apoptosis in cancer cells. Through his work, Roy contributes significantly to understanding how transition-metal coordination frameworks can be engineered for bioactive and diagnostic applications. With over 30 publications in high-impact journals such as those of the American Chemical Society (ACS), the Royal Society of Chemistry (RSC), and Elsevier, his contributions demonstrate strong scientific rigor and creativity. His findings provide valuable insights into structure-activity relationships and potential therapeutic mechanisms, advancing the frontier of chemodynamic and photodynamic cancer therapy. Currently, he is an active member of the Society of Biological Inorganic Chemistry (SBIC), reflecting his ongoing engagement with the international scientific community. Nilmadhab Roy’s work represents a forward-thinking approach to integrating chemical innovation with biomedical application.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

  • Kar, B., Das, U., Roy, N., & Paira, P. (2023). Recent advances on organelle specific Ru(II)/Ir(III)/Re(I) based complexes for photodynamic therapy. Coordination Chemistry Reviews, 474, 214860.

  • Sharma, A., Sudhindra, P., Roy, N., & Paira, P. (2020). Advances in novel iridium (III) based complexes for anticancer applications: A review. Inorganica Chimica Acta, 513, 119925.

  • Pete, S., Roy, N., Kar, B., & Paira, P. (2022). Construction of homo and heteronuclear Ru(II), Ir(III) and Re(I) complexes for target specific cancer therapy. Coordination Chemistry Reviews, 460, 214462.

  • Sarkar, B., Mondal, A., Madaan, Y., Roy, N., Moorthy, A., Kuo, Y. C., & Paira, P. (2019). Luminescent anticancer ruthenium(II)-p-cymene complexes of extended imidazophenanthroline ligands: Synthesis, structure, reactivity, biomolecular interactions and live cell studies. Dalton Transactions, 48(32), 12257–12271.

  • Sudhindra, P., Sharma, S. A., Roy, N., Moharana, P., & Paira, P. (2020). Recent advances in cytotoxicity, cellular uptake and mechanism of action of ruthenium metallodrugs: A review. Polyhedron, 192, 114827.

Jiaming Ni | Chemistry | Best Researcher Award

Dr. Jiaming Ni | Chemistry | Best Researcher Award

Dr. Jiaming Ni | Chemistry | Nanchang Hangkong University | China

Jiaming Ni, is a dedicated researcher specializing in two-dimensional (2D) materials with a strong focus on their applications in photocatalysis, gas sensing, and semiconductor technologies. With a solid foundation in materials science and engineering, he has advanced his expertise through rigorous academic and industrial experiences. From his early education in Vehicle Engineering to his doctoral research in Materials Science, Jiaming has consistently demonstrated persistence, curiosity, and innovation. His work spans density functional theory (DFT) simulations, heterostructure design, and semiconductor process improvement. Beyond his academic achievements, he has practical industry experience in semiconductor manufacturing and environmental protection technology, where he contributed to experimental design, process optimization, and performance evaluation. Known for his patient and detail-oriented approach, Jiaming is also an effective communicator with strong leadership experience, including serving as a university association president. His career objective is to further advance 2D materials research for practical industrial applications.

Author Profile

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Education 

Jiaming Ni began his academic journey at Nanchang University College of Science and Technology, where he pursued a four-year program in Vehicle Engineering. During his undergraduate years, he demonstrated strong leadership qualities, serving as president of the Tourism Association while maintaining a balance between academics and extracurricular activities. Building on this foundation, he advanced to the Guilin University of Electronic Technology, specializing in Microelectronic Packaging for his Master’s degree. His academic excellence was recognized with three scholarships, and he earned the distinction of delivering the Best Defense for his thesis. Currently, Jiaming is pursuing his Ph.D. in Materials Science at Universidad Autónoma de San Luis Potosí, where his research is centered on semiconductor materials, density functional theory applications, and the design of van der Waals heterostructures for advanced energy and sensing technologies. His continuous learning mindset also drives his self-study of semiconductor manufacturing processes and 2D material properties.

Experience

Jiaming Ni has cultivated a diverse career blending academic research with industrial applications. His early professional exposure came through project experiences at SDIC Xinjiang Lop Nur Potash Co., Ltd., where he worked on flotation process optimization and laboratory test investigations. He later collaborated with Shandong Runsheng Environmental Protection Technology Co., Ltd., planning experiments and analyzing water treatment processes. Transitioning into the semiconductor sector, Jiaming served as a Manufacturing Engineer at Semiconductor Manufacturing International Corporation (SMIC), where he was responsible for production planning, system testing, on-site management, and yield improvement in 12-inch fabrication facilities. Currently, he works at Guangzhou Yuexin Semiconductor Technology Co., Ltd. as a TD PIE engineer, focusing on online CP/CPK analysis, product flow optimization, anomaly handling, and yield enhancement. Complementing his industrial work, Jiaming is advancing his Ph.D. research on 2D materials, combining theoretical DFT studies with practical semiconductor technology, thereby bridging academic innovation with real-world industry needs.

Awards and Honors

Throughout his academic and professional journey, Jiaming Ni has consistently been recognized for his dedication and excellence. During his Master’s studies at Guilin University of Electronic Technology, he earned three prestigious scholarships, reflecting his strong academic performance and research potential. His commitment to excellence culminated in achieving the honor of delivering the Best Defense for his thesis, a distinction highlighting both his technical depth and communication skills. His leadership capabilities were acknowledged during his undergraduate years when he served as the President of the Tourism Association, showcasing his organizational and interpersonal abilities. In his professional career, Jiaming’s contributions in semiconductor manufacturing and process optimization have been recognized by his supervisors and project leaders, reinforcing his value as a team-oriented innovator. These accolades collectively underscore his capability to balance research excellence with leadership, making him a promising candidate for advancing the frontiers of materials science and semiconductor technologies.

Research Focus

Jiaming Ni’s research is centered on the design, simulation, and application of two-dimensional (2D) materials, particularly for energy and sensing applications. His work employs density functional theory (DFT) to investigate adsorption mechanisms, electronic properties, and catalytic performance of graphene, MoS₂, InSe, and their doped or heterostructure counterparts. A key area of his study involves van der Waals heterostructures for hydrogen production through photocatalysis, addressing the global challenge of clean energy. Additionally, he explores gas adsorption and sensing capabilities of doped 2D materials, targeting hazardous molecules such as SO₂, CH₄, and other small gases, with potential applications in environmental monitoring. Beyond theoretical modeling, his research extends into semiconductor manufacturing processes, where he contributes to yield improvement, flow optimization, and anomaly resolution. By combining computational modeling with practical semiconductor expertise, Jiaming bridges fundamental science and applied engineering, aiming to advance sustainable energy, environmental sensing, and next-generation electronic devices.

Publications

  1. Using van der Waals heterostructures based on InSe-XS₂ for efficient hydrogen production.

  2. Density-functional calculation of methane adsorption on graphene.

  3. Adsorption of small gas molecules on Fe, Ni, Co, and Cu-doped graphene: A DFT study.

  4. Adsorption of SO₂ gas molecules on B, N, P, and Al-doped MoS₂: A DFT investigation.

  5. Theoretical insights into sensing mechanisms of pure and doped graphene-based methane sensors.

Conclusion

Jiaming Ni is an accomplished and forward-looking researcher in the field of materials science and semiconductor technology, with a specialization in 2D materials and DFT-based modeling. His blend of strong academic background, industry experience, leadership roles, and innovative research focus positions him as a valuable contributor to the advancement of clean energy, environmental sensing, and semiconductor applications. His publications reflect deep expertise in computational chemistry and applied materials, making him a deserving candidate for recognition in the field of Chemistry and Materials Research.

Jun-Qing Yin | Chemistry | Best Researcher Award

Prof. Dr. Jun-Qing Yin | Chemistry | Best Researcher Award

Prof. Dr. Jun-Qing Yin | Chemistry | Chengdu University | China

Dr. Jun-Qing Yin is a distinguished researcher specializing in physical chemistry, with a focus on catalytic mechanisms and surface science. Currently serving as a Research Fellow at the Institute of Advanced Study, Chengdu University, China, he has made significant contributions to understanding single-atom alloys, phase-separated alloys, and metal-support interfaces in catalytic reactions. His academic journey includes a Ph.D. in Physical Chemistry from the University of Chinese Academy of Sciences, an M.Sc. from Inner Mongolia Normal University, and a B.Sc. from Shanxi Datong University. Dr. Yin’s work blends advanced theoretical investigations with collaborative experimental studies, resulting in impactful publications in leading journals such as Nature, Science, and Journal of Catalysis. He has conducted postdoctoral research in the renowned group of Shigeyoshi Sakaki at Kyoto University, Japan. Recognized for his rigorous approach and innovative insights, Dr. Yin continues to push the boundaries of catalytic chemistry and its applications in energy and materials science.

Author Profiles

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Education

Dr. Jun-Qing Yin holds a Doctor of Philosophy in Physical Chemistry from the University of Chinese Academy of Sciences, Beijing, where his research focused on the theoretical investigation of iron surfaces and iron-silica interfaces in Fischer-Tropsch Synthesis (FTS). He earned his Master’s degree in Physical Chemistry from Inner Mongolia Normal University, Hohhot, where he explored the structures and stabilities of gold clusters and their adsorption properties with formaldehyde (HCHO). His academic foundation was built at Shanxi Datong University, where he completed his Bachelor’s degree in Chemistry, gaining a comprehensive understanding of chemical principles and laboratory techniques. Throughout his academic training, Dr. Yin combined computational chemistry, quantum chemical calculations, and catalysis-focused studies, developing a strong theoretical and analytical skill set. His academic trajectory demonstrates a consistent focus on catalysis, materials interfaces, and reaction mechanisms, positioning him as a leading figure in the intersection of computational chemistry and applied catalytic research.

Experience

Dr. Jun-Qing Yin’s professional career reflects a strong combination of theoretical expertise and applied catalytic research. Since June 2022, he has been a Research Fellow at Chengdu University, where he investigates the stability and catalytic performance of single-atom alloys, NO-CO reactions, and methane dry reforming. Previously, from December 2020 to March 2022, he was a Postdoctoral Fellow at Kyoto University under the mentorship of Prof. Shigeyoshi Sakaki, focusing on the catalytic behavior of nickel-based gold single-atom alloys. During his doctoral and postdoctoral years, Dr. Yin’s research centered on understanding reaction mechanisms in Fischer-Tropsch Synthesis, particularly iron-based catalysts and metal-support interfaces. His work bridges theoretical modeling and experimental collaboration, enabling the rational design of advanced catalysts. He has published extensively in high-impact journals, contributing fundamental insights into alloy stability, surface modifications, and catalytic selectivity, and continues to collaborate internationally to advance catalytic science for industrial and environmental applications.

Awards and Honors 

Dr. Jun-Qing Yin’s career is marked by multiple academic and research achievements, reflected through high-profile publications in Nature, Science, and Journal of Catalysis. His invitation to join Prof. Shigeyoshi Sakaki’s esteemed research group at Kyoto University as a Postdoctoral Fellow is a testament to his research caliber and international recognition. Dr. Yin’s contributions to catalytic chemistry, particularly in Fischer-Tropsch Synthesis and alloy catalysis, have earned him a strong reputation within the global scientific community. His ability to integrate theoretical modeling with experimental validation has been widely acknowledged, leading to impactful collaborations with researchers worldwide. Several of his works have been cited as significant advancements in catalyst design, reaction mechanism understanding, and sustainable chemical processes. His research excellence continues to contribute to the development of next-generation catalysts with improved selectivity and efficiency, reinforcing his standing as a promising and influential scientist in the field of chemistry.

Research Focus 

Dr. Jun-Qing Yin’s research lies at the intersection of computational chemistry, catalysis, and materials science. His primary focus is on the stability and reactivity of single-atom alloys, phase-separated alloys, and metal-support interfaces. He has extensively studied the catalytic mechanisms in Fischer-Tropsch Synthesis, including CO activation, CH₄ formation, and carbon chain growth, with a special interest in iron-based catalysts and iron-carbide systems. His recent work explores the NO-CO reaction and methane dry reforming using nickel and gold single-atom alloys, revealing atomic-level insights into enhanced catalytic activity. Dr. Yin also investigates surface modifications, such as silica-based ligand binding, to improve C₂ oxygenate selectivity. Employing advanced computational modeling and collaborating with experimentalists, he aims to design catalysts with optimized performance for sustainable energy and industrial processes. His research bridges theory and practice, delivering both fundamental understanding and practical solutions for efficient and selective catalytic systems.

Publications Titles

  1. Regioselective hydroformylation of propene catalysed by rhodium–zeolite.

  2. Catalysis of Ni-based gold single-atom alloy for NO–CO reaction.

  3. Surface modification of Fe₅C₂ by silica-based ligand for enhanced C₂ oxygenate selectivity .

  4. New reaction mode of 3-halooxindoles for indolenine-fused oxathiines synthesis.

  5. Theoretical study of iron–silicon interface by Fe deposition on Si(111)-(7×7) .

  6. Visualization of on-surface ethylene polymerization.

  7. Single atom vs phase-separated alloys in Ni, Cu, Ag, Au systems .

  8. Intrinsic facet-dependent CH₄ and C₂ formation on Fe₅C₂ particles .

  9. Tuning CH₄ selectivity via C₁ + C₁ couplings on Fe surfaces.

  10. Iron carbidization on silica and silicon studied via NAP-XPS & STM .

Conclusion

Dr. Jun-Qing Yin’s academic journey and research record demonstrate exceptional expertise in catalytic chemistry, particularly in theoretical modeling and alloy catalysis. His publications in top-tier journals, international collaborations, and cross-disciplinary approach position him as an innovative contributor to sustainable catalysis and energy-related chemistry. With a focus on translating atomic-level insights into practical applications, Dr. Yin’s work holds significant promise for advancing industrial catalytic processes. His combination of rigorous theoretical analysis and cooperative experimental engagement ensures his continued impact in the field of chemistry.

 

 

Angélique Nicolas MESSI | Chemistry | Academic Excellence Honor

Dr. Angélique Nicolas MESSI | Chemistry | Academic Excellence Honor

Dr. Angélique Nicolas MESSI, Département de chimie organique, Université de Yaoundé 1, Cameroon

Dr. Angélique Nicolas Messi is a distinguished Cameroonian chemist renowned for her contributions to organic and natural products chemistry. Born on February 7, 1983, in Ngambe, Cameroon, she has dedicated her career to exploring bioactive compounds from medicinal plants, focusing on their potential in treating diseases like HIV/AIDS, malaria, and cancer. Her work integrates advanced chromatographic and spectroscopic techniques, emphasizing green chemistry and sustainable practices. Dr. Messi’s research has not only advanced scientific understanding but also garnered international recognition, including the Best Researcher in Organic Chemistry award in 2025. She currently serves as a Senior Lecturer at the University of Yaoundé I and heads the Department of Basic and Applied Fundamental Sciences at the State University of Ebolowa. Her dedication to education and research continues to inspire and pave the way for future innovations in chemistry.

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Suitability Summary for Research for Academic Excellence Honor

Dr. Angelique Nicolas Messi stands out as an exemplary candidate for the Research for Academic Excellence Honor owing to his outstanding contributions to the field of organic chemistry, particularly in natural products and pharmaceutical chemistry. His profound expertise in chromatographic techniques (HPLC, MPLC, flash chromatography), spectral analysis (NMR, IR, LC-MS), and green synthetic strategies demonstrates a deep mastery of both experimental and theoretical aspects of chemical research. This technical expertise underpins his impactful research on bioactive compounds derived from medicinal plants, focusing on neuroprotection, anticancer, antimalarial, and anti-HIV properties, which are of significant relevance to global health challenges.

In addition to his research prowess, Dr. Messi has demonstrated excellence in academic leadership and mentorship. Serving as a full-time senior lecturer at the University of Yaoundé I and heading the Department of Basic and Applied Fundamental Sciences at the State University of Ebolowa, he actively shapes future generations of scientists through rigorous teaching and supervision. His role as chair of the Natural Product Chemistry Laboratory and his supervision of multiple Master’s students highlight his commitment to fostering academic growth and scientific inquiry.

🎓 Education

Dr. Messi’s academic journey reflects her deep commitment to chemistry. She earned her Ph.D. in Organic Chemistry from the University of Yaoundé I, focusing on biflavonoids and other constituents from Ochna species. Prior to this, she obtained a Master’s degree in Organic Chemistry and a Bachelor’s degree in Applied Chemistry from the University of Ngaoundere. Her foundational studies began with a DEUG in Applied Chemistry and Advanced Levels in Sciences and Mathematics from B.G.S Buea. To further her research, she undertook postdoctoral studies at the University of Fribourg in Switzerland under Prof. Christian G. Bochet. These academic pursuits have equipped her with a robust foundation in both theoretical and practical aspects of chemistry, enabling her to contribute significantly to the field.

💼 Professional Experience

Dr. Messi’s professional career is marked by a blend of teaching, research, and leadership. As a Senior Lecturer at the University of Yaoundé I, she imparts knowledge in General Chemistry, Organic Chemistry, Analytical Chemistry, Thermodynamics, Botany, Pharmacognosy, and research methodology. She also leads the Department of Basic and Applied Fundamental Sciences at the State University of Ebolowa and serves as a part-time Senior Lecturer at the International School of Petroleum Engineering. Her roles extend to supervising Master’s students and chairing the Natural Product Chemistry Laboratory at the University of Yaoundé I. Dr. Messi’s extensive experience in chromatographic and spectroscopic techniques, coupled with her leadership in various academic departments, underscores her multifaceted contributions to the field of chemistry.

🏅 Awards and Recognition

Dr. Messi’s exemplary work in chemistry has been recognized through numerous awards and fellowships. In 2025, she was honored as the Best Researcher in Organic Chemistry. Her international engagements include a research visit to the University of Free State, South Africa, in 2023, and a postdoctoral fellowship at the University of Fribourg, Switzerland, during 2020-2021. She also participated in the African Training School on Green Chemistry and Environmental Sustainability in Morocco in 2025. Additionally, she received a Ph.D. research fellowship at the University of Free State in 2015. These accolades reflect her global impact and dedication to advancing chemical research.

🌍 Research Skills On Chemistry

Dr. Messi possesses a comprehensive skill set in chemical research. Her expertise encompasses chromatographic techniques like Column, Flash, Reverse Phase, MPLC, HPLC, and Preparative TLC. She is proficient in spectroscopic methods including NMR, IR, LC-MS, GC-MS, and HRESIMS. Her research involves the isolation and characterization of bioactive compounds from medicinal plants, employing spectroscopic techniques such as 1D and 2D NMR, IR, UV, Mass Spectrometry, optical rotations, and elemental analysis. Dr. Messi also emphasizes green synthetic strategies and has a strong understanding of GLP and laboratory safety requirements. Her multilingual abilities in French and English, combined with her proficiency in software like Microsoft Office and Chemdraw, further enhance her research capabilities.

📖  Publication Top Notes

  1. Cytotoxic flavonoids and other constituents from the stem bark of Ochna schweinfurthiana
    Authors: JT Ndongo, ME Issa, AN Messi, J Ngo Mbing, M Cuendet, DE Pegnyemb, …
    Journal: Natural Product Research, Volume 29, Issue 17, Pages 1684-1687
    Citations: 48
    Year: 2015
  2. Phenolic compounds from the roots of Ochna schweinfurthiana and their antioxidant and antiplasmodial activities
    Authors: AN Messi, JN Mbing, JT Ndongo, MA Nyegue, AT Tchinda, FL Yemeda, …
    Journal: Phytochemistry Letters, Volume 17, Pages 119-125
    Citations: 28
    Year: 2016
  3. Phytochemical Study of Aqueous Extract of Ochna schweinfurthiana F. Hoffm Powder Bark and Evaluation of Their Anti‐Inflammatory, Cytotoxic, and Genotoxic …
    Authors: SV Djova, MA Nyegue, AN Messi, AD Afagnigni, FX Etoa
    Journal: Evidence‐Based Complementary and Alternative Medicine, 2019, Article ID 8908343
    Citations: 22
    Year: 2019
  4. In Vitro and In Silico Potential Inhibitory Effects of New Biflavonoids from Ochna rhizomatosa on HIV-1 Integrase and Plasmodium falciparum
    Authors: AN Messi, SL Bonnet, BA Owona, A Wilhelm, ELD Kamto, JT Ndongo, …
    Journal: Pharmaceutics, Volume 14, Issue 8, Article 1701
    Citations: 9
    Year: 2022
  5. Evaluation of the antioxidant activity of the leaves, stem-barks extracts and fractions of Ochna schweinfurthiana F. Hoffm (Ochnaceae)
    Authors: MA Nyegue, JN Mbing, SV Djova, AN Messi, SV Olugu, DE Pegnyemb, …
    Journal: African Journal of Pharmacy and Pharmacology, Volume 10, Issue 17, Pages 370-378
    Citations: 6
    Year: 2016
  6. Biflavonoid Methylchamaejasmin and Khaya grandifoliola Extract Inhibit NLRP3 Inflammasome in THP-1 Cell Model of Neuroinflammation
    Authors: BA Owona, A Mary, AN Messi, KA Ravichandran, JN Mbing, E Pegnyemb, …
    Journal: Molecular Neurobiology, Volume 62, Issue 2, Pages 1605-1619
    Citations: 1
    Year: 2025
  7. Rhizomatoflavonoid D and Other Flavonoids from the Twigs of Ochna Rhizomatosa as a Potential Inhibitor of HIV-1
    Authors: AN Messi, B Tsakem, M Akongwi, O Bodede, P Moyo, …
    Journal: Chemistry Africa, Volume 7, Issue 9, Pages 4719-4726
    Citations: 1
    Year: 2024
  8. Two new aggreceride derivatives and other chemical constituents from the stems of Tarenna conferta Benth and their potential antileishmanial activity against Leishmania …
    Authors: RC Dzukoug, AN Messi, RD Zeukang, SL Bonnet, A Wilhelm, DG Tene, …
    Journal: Biochemical Systematics and Ecology, Volume 121, Article 104990
    Citations: Not specified
    Year: 2025
  9. Antimicrobial activity and structure elucidation of Pterosterone, a naturally occurring phytoecdysteroid isolated from the leaves of Vitex madiensis Oliv.(Lamiaceae)
    Authors: EM Lengbiye, AN Messi, LM Messi, B Fofack, AAA Zintchem, DS Gwladys, …
    Journal: Pharmacological Research-Natural Products, Article 100264
    Citations: Not specified
    Year: 2025
  10. Impact of solvation on plant-derived cyclic octapeptide alkaloid reactivity and drug suitability against target proteins implicated in leukemia: DFT, pharmacokinetics and …
    Authors: OC Godfrey, EA Adindu, JC Ugwu, AN Messi
    Journal: Journal of Molecular Structure, Article 142504
    Citations: Not specified
    Year: 2025

Fatima Zohra ZEGGAI | Chemistry | Best Researcher Award

Dr. Fatima Zohra ZEGGAI | Chemistry | Best Researcher Award

Dr. Fatima Zohra ZEGGAI, scientific and technical research centre on physico-chemical analyses CRAPC, Algeria

Fatima Zohra ZEGGAI is a highly accomplished Research Chemist with over 7 years of experience in leading innovative research and development projects in both inorganic and organic chemistry. She serves as a Senior Researcher at CRAPC and holds reviewer positions at MDPI – Colloids and Interfaces Journal and the Journal of Umm Al-Qura University for Applied Sciences. Additionally, she acts as the Algerian ambassador for Elsevier Africa. Fatima is proficient in various analytical techniques including XPS, CV, FT-IR, UV-vis, XRD, TG-DSC, and TEM. She demonstrates exceptional skills in scientific software tools like Matlab, Origin, ChemOffice, and FP-suite, complemented by strong knowledge of citation management systems like Zotero and Mendeley.

Professional Profile

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Summary of Suitability for the “Research for Best Researcher Award”

Fatima Zohra ZEGGAI stands out as an exceptional candidate for the “Research for Best Researcher Award” due to her extensive experience and impressive research background in both inorganic and organic chemistry. With over seven years of hands-on experience in cutting-edge research and development projects, she has contributed significantly to the field through various advanced techniques. Her proficiency in laboratory analysis, problem-solving, and thorough documentation ensures that her work is both precise and reliable, which is a crucial aspect of impactful research.

🎓 Education 

Fatima Zohra ZEGGAI completed her formal education in Chemistry, specializing in both inorganic and organic chemistry. She gained extensive knowledge and practical experience through her academic journey, which laid the foundation for her advanced research skills. During her studies, she developed a strong command over various laboratory techniques and analytical tools essential for chemical research. Her education was marked by rigorous training in scientific methodologies, research writing, and data analysis, which she effectively applies in her current research projects. Her deep understanding of chemical reactions and processes is complemented by her expertise in modern computational tools and databases like SciFinder, Scholar, ISI-Web of Knowledge, and Reaxys. This robust educational background has been instrumental in her research achievements and her role as a Senior Researcher.

💼 Professional Experience 

Fatima Zohra ZEGGAI has accumulated over 7 years of professional experience as a Research Chemist. Currently, she is a Senior Researcher at CRAPC, where she leads cutting-edge research projects in inorganic and organic chemistry. Her role involves planning and conducting experiments, analyzing data, and preparing scientific publications. Fatima is also a dedicated reviewer for the MDPI – Colloids and Interfaces Journal and the Journal of Umm Al-Qura University for Applied Sciences, where she contributes her expertise to ensure high-quality publications. Furthermore, as the Algerian ambassador for Elsevier Africa, she promotes research collaboration and knowledge sharing. Her work experience is complemented by proficiency in various software tools and techniques, including XPS, CV, FT-IR, UV-vis, XRD, TG-DSC, and TEM, demonstrating her strong problem-solving and analytical skills.

🏅 Awards and Recognition 

Fatima Zohra ZEGGAI has received significant recognition for her contributions to the field of chemistry. Her role as the Algerian ambassador for Elsevier Africa highlights her commitment to fostering research excellence and collaboration in the region. Additionally, her work as a reviewer for prestigious journals like MDPI – Colloids and Interfaces Journal and the Journal of Umm Al-Qura University for Applied Sciences reflects her reputation as a trusted expert in her field. Fatima’s proficiency in various analytical techniques and computational tools has earned her respect and recognition among her peers. Her achievements are further demonstrated through numerous research publications and collaborations, which showcase her dedication to advancing chemical research and promoting scientific integrity.

🌍 Research Skill On Chemistry 

Fatima Zohra ZEGGAI’s research skills encompass a wide range of analytical techniques and computational tools essential for chemical research. She is highly proficient in XPS, CV, FT-IR, UV-vis, XRD, TG-DSC, and TEM techniques, which she applies in her research to explore various aspects of inorganic and organic chemistry. Her computational skills include the use of Microsoft Office, Adobe Photoshop, Xpert Plus, VoltaMaster, EC-Lab Express, Matlab, Origin, ChemOffice, Match 3!, FP-suite, and EndNote. Fatima also has strong research management skills through tools like Zotero, Mendeley, PubMed, SciFinder, Scholar, ISI-Web of Knowledge, Reaxys, and Embase. Her expertise allows her to efficiently design experiments, analyze complex data, and document findings accurately, contributing to impactful scientific publications.

📖 Publication Top Notes

  • Title: Chemical polymerization, characterization and electrochemical studies of PANI/ZnO doped with hydrochloric acid and/or zinc chloride: differences between the synthesized …
    Authors: S Daikh, FZ Zeggai, A Bellil, A Benyoucef
    Journal: Journal of Physics and Chemistry of Solids
    Citations: 108
    Year: 2018

  • Title: Anionic methyl orange removal from aqueous solutions by activated carbon reinforced conducting polyaniline as adsorbent: synthesis, characterization, adsorption behavior …
    Authors: A Bekhoukh, I Moulefera, FZ Zeggai, A Benyoucef, K Bachari
    Journal: Journal of Polymers and the Environment
    Citations: 71
    Year: 2022

  • Title: Physical and electrochemical investigations on hybrid materials synthesized by polyaniline with various amounts of ZnO nanoparticle
    Authors: S Bousalem, FZ Zeggai, H Baltach, A Benyoucef
    Journal: Chemical Physics Letters
    Citations: 55
    Year: 2020

  • Title: Preparation of new nanocomposite poly (GDMA)/mesoporous silica and its adsorption behavior towards cationic dye
    Authors: Z Cherifi, B Boukoussa, A Mokhtar, M Hachemaoui, FZ Zeggai, A Zaoui, …
    Journal: Reactive and Functional Polymers
    Citations: 51
    Year: 2020

  • Title: Copper (II) removal from aqueous solutions by PANI-clay hybrid material: fabrication, characterization, adsorption and kinetics study
    Authors: H Soltani, A Belmokhtar, FZ Zeggai, A Benyoucef, S Bousalem, K Bachari
    Journal: Journal of Inorganic and Organometallic Polymers and Materials
    Citations: 46
    Year: 2019

  • Title: A comparative study on surfactant cetyltrimethylammoniumbromide modified clay‐based poly (p‐anisidine) nanocomposites: Synthesis, characterization, optical and electrochemical …
    Authors: N Boutaleb, F Chouli, A Benyoucef, FZ Zeggai, K Bachari
    Journal: Polymer Composites
    Citations: 21
    Year: 2021

  • Title: Role of p-Benzoquinone on Chemically Synthesized Nanocomposites by Polyaniline with V2O5 Nanoparticle
    Authors: D Ouis, FZ Zeggai, A Belmokhtar, A Benyoucef, B Meddah, K Bachari
    Journal: Journal of Inorganic and Organometallic Polymers and Materials
    Citations: 17
    Year: 2020

  • Title: Preparation of activated carbon-metal nanoparticle composite materials for the catalytic reduction of organic pollutants
    Authors: B Boukoussa, KR Cherdouane, R Zegai, A Mokhtar, M Hachemaoui, …
    Journal: Surfaces and Interfaces
    Citations: 16
    Year: 2024

  • Title: Ultrasound-promoted preparation of cellulose acetate/organophilic clay bio-nanocomposites films by solvent casting method
    Authors: Z Cherifi, A Zaoui, B Boukoussa, H Derdar, OZ El Abed, FZ Zeggai, …
    Journal: Polymer Bulletin
    Citations: 16
    Year: 2023

  • Title: Improvement of the viscoelastic and thermal properties of polyvinyl acetate reinforced with organophilic clay (Algerian MMT)
    Authors: BI Cherifi, M Belbachir, A Rahmouni, C Derail, F Hannaoui, FZ Zeggai, …
    Journal: Journal of Molecular Structure
    Citations: 12
    Year: 2022

HoYoung Yoon | Chemical Engineering | Best Researcher Award

Dr. HoYoung Yoon | Chemical Engineering | Best Researcher Award

Dr. HoYoung Yoon, Åbo Akademi University, Finland

Dr. Ho Young Yoon is a dedicated researcher in the field of Chemical Engineering, specializing in natural materials and environmental sustainability. Currently a Postdoctoral Fellow at Åbo Akademi University, Finland, he focuses on innovative materials derived from biological sources. With a Ph.D. from Gyeongsang National University, South Korea, he has made significant contributions to applied microbiology and biomaterials. His research explores novel approaches to wastewater treatment, bio-based fertilizers, and circular economy solutions. Dr. Yoon has been instrumental in pioneering smart fertilizers and sustainable material innovations, securing major research grants and patents. Recognized globally, he has participated in prestigious scientific summits and collaborated with international institutions. His groundbreaking work has led to several high-impact publications, highlighting his expertise in biotechnological applications. Passionate about eco-friendly engineering solutions, Dr. Yoon continues to push the boundaries of sustainable science to address critical environmental challenges.

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Evaluation of Dr. Ho Young Yoon for the Research for Best Researcher Award

Dr. Ho Young Yoon is a highly accomplished researcher specializing in natural materials technology, applied microbiology, and biomaterials. His academic journey spans prestigious institutions such as Åbo Akademi University in Finland and Gyeongsang National University in South Korea, where he has excelled in research related to sustainable materials, environmental chemistry, and bio-based innovations. His diverse expertise is evident in his postdoctoral and doctoral work, which focuses on developing eco-friendly technologies for agricultural and industrial applications.

A key strength of Dr. Yoon’s research is his ability to secure competitive funding, including grants from the National Research Foundation of Korea and the Korea Water Resources Corporation. These grants have supported groundbreaking projects such as developing mycelium-based bricks for pollutant removal and creating slow-release fertilizers using wastewater sludge. His leadership in these projects underscores his ability to conduct impactful, real-world research that bridges academia and industry.

🎓 Education

Dr. Ho Young Yoon’s academic journey is rooted in excellence and innovation. He earned his Ph.D. in Applied Life Science from Gyeongsang National University (2020-2024) under the mentorship of Prof. Jong-Rok Jeon. His doctoral research focused on advanced bio-based materials and environmental applications, particularly in wastewater treatment and sustainable fertilizers. Prior to that, he completed a Bachelor of Science in Applied Life Chemistry at the same university (2013-2020), where he developed a strong foundation in biochemistry and material science. Currently, Dr. Yoon is a Postdoctoral Fellow at Åbo Akademi University in Finland, specializing in Natural Materials Technology under Prof. Chunlin Xu. His education has been enriched by competitive fellowships and research grants, including the prestigious National Research Foundation of Korea Ph.D. fellowship. His interdisciplinary training in chemistry, microbiology, and material engineering equips him to develop groundbreaking solutions for environmental and industrial challenges.

💼 Professional Experience 

Dr. Ho Young Yoon’s professional experience reflects his expertise in Chemical Engineering and sustainable technology. Since 2024, he has been a Postdoctoral Fellow at Åbo Akademi University, focusing on bio-based material innovations. Earlier, he was a Visiting Researcher at the same institution (Jan-Apr 2024), collaborating on advanced natural material applications. His contributions extend beyond academia, as he played a key role in technology transfer projects, including the development of a natural hair dye composition ($74,000 contract) and a nano-coated smart phosphorus fertilizer (European patent). Additionally, he was an official Korean participant at the Global Young Scientist Summit in Singapore (2024), where he engaged with top international researchers. Dr. Yoon’s research projects, funded by leading organizations, have addressed critical environmental concerns, from micropollutant removal to sustainable agriculture. His industry collaborations and pioneering patents highlight his commitment to bridging scientific discovery with real-world impact.

🏅 Awards and Recognition 

Dr. Ho Young Yoon has received numerous awards and recognitions for his outstanding contributions to Chemical Engineering and environmental sustainability. He was awarded the prestigious Ph.D. fellowship from the National Research Foundation of Korea ($16,000), supporting his innovative work on bio-based slow-release fertilizers. His research was also funded by the Korea Water Resources Corporation’s Open Innovation R&D program ($8,000), acknowledging his groundbreaking work in wastewater treatment. His patented smart fertilizer technology led to a significant industry collaboration with Recover Ingredients in Italy, securing licensing rights with ongoing revenue. Additionally, his research has been featured as a front cover article in Advanced Sustainable Systems. His participation in the Global Young Scientist Summit (2024) further solidified his reputation as an emerging leader in sustainable engineering. Through his work, Dr. Yoon continues to make a lasting impact in academia and industry, driving forward eco-friendly material innovations.

🌍 Research Skills On Chemical Engineering

Dr. Ho Young Yoon possesses a diverse range of research skills, specializing in biopolymer engineering, nanotechnology, and environmental sustainability. He has extensive experience in developing smart fertilizers, bio-based adsorbents, and eco-friendly composite materials. His expertise in wastewater treatment includes advanced methods for removing micropollutants using mycelium-based bio-materials. Dr. Yoon is proficient in structural analysis of natural polymers, employing techniques such as FTIR, SEM, and XRD. His ability to synthesize bio-functionalized nanoparticles has led to patented innovations in agricultural and cosmetic industries. He is skilled in technology transfer, having successfully commercialized multiple sustainable materials. His research approach integrates multidisciplinary knowledge from microbiology, chemistry, and engineering, enabling him to design circular economy solutions. With a strong publication record and collaborations across academia and industry, Dr. Yoon continues to drive innovation in environmental biotechnology, creating scalable solutions for real-world applications.

 📖 Publication Top Notes

Recycling tempura powder debris derived from the fried food industry as a binder for 3-dimensional biodegradable composites: A novel circular economy alternative to low-performance plastics.

Authors: M., Oh, Minseung, H., Yoon, Ho-young, N., Thanh Phong, Nguyen, K., Kim, Kang-soo, J., Jeon, Jong-rok

year: 2024

Marielle CROZET | Chemistry | Best Researcher Award

Dr. Marielle CROZET | Chemistry | Best Researcher Award

👤 Dr. Marielle CROZET, CEA, France

Dr. Marielle Crozet is a distinguished researcher at the French Alternative Energies and Atomic Energy Commission (CEA), renowned for her expertise in analytical chemistry and chemical metrology, particularly in the nuclear field. A graduate of Chimie Paris, she holds a Master of Science from Sherbrooke University and a PhD in Physics. Over the years, Dr. Crozet has significantly contributed to advancing nuclear metrology through her involvement in numerous European and Japanese research projects. Her collaborative endeavors with prestigious organizations like the Joint Research Centre (JRC) and the International Atomic Energy Agency (IAEA) have underscored her commitment to excellence. With a robust citation index and a proven track record in scientific innovation, Dr. Crozet’s work exemplifies the intersection of analytical precision and impactful research, positioning her as a leader in her field.

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🌟 Suitability for the Research for Best Researcher Award: Dr. CROZET Marielle

Summary of Suitability

Dr. CROZET Marielle’s extensive academic and professional background in analytical chemistry and chemical metrology in the nuclear field positions her as a strong candidate for the Research for Best Researcher Award. Her education credentials, spanning Chimie Paris, a Master’s from Sherbrooke University, and a Ph.D. in Physics, underscore her solid foundation in science and engineering. Her work focuses on a niche and impactful domain, addressing analytical and metrological challenges in the nuclear sector, which are critical for scientific accuracy and safety.

Dr. Crozet’s research contributions include several projects in metrology in the nuclear field, demonstrating her role in advancing this specialized area. Her collaboration with renowned organizations such as JRC (Joint Research Centre) and IAEA (International Atomic Energy Agency) highlights her expertise and recognition at the international level.

🎓  Education 

Dr. Marielle Crozet’s academic journey is rooted in rigorous training and academic excellence. She began her education at Chimie Paris, a prestigious institution in France, where she gained foundational knowledge in chemistry. Her pursuit of advanced learning led her to Sherbrooke University, where she earned a Master of Science degree, further deepening her expertise. Dr. Crozet later attained a PhD in Physics, a milestone that catalyzed her focus on analytical chemistry and chemical metrology within the nuclear field. Her interdisciplinary education, blending chemistry and physics, has equipped her with the skills to address complex challenges in nuclear science. This strong academic foundation has been instrumental in shaping her career as a thought leader and innovator in metrology and analytical chemistry, reinforcing her role in advancing research and innovation in her field.

💼  Professional Experience 

Dr. Marielle Crozet has had an illustrious career at the French Alternative Energies and Atomic Energy Commission (CEA). Her professional trajectory is characterized by her specialized focus on analytical chemistry and metrology within the nuclear domain. Dr. Crozet has successfully managed and contributed to several high-impact European and Japanese research projects, enhancing the precision and reliability of chemical measurements in nuclear science. She has collaborated with international bodies, including the Joint Research Centre (JRC) and the International Atomic Energy Agency (IAEA), solidifying her reputation as a global expert in her field. Her extensive experience spans consultancy, project leadership, and active participation in cutting-edge research initiatives. Dr. Crozet’s professional accomplishments not only underscore her technical proficiency but also highlight her dedication to advancing analytical methodologies and metrological standards in nuclear research, making her a pivotal figure in the scientific community.

🏅 Awards and Recognitions 

Dr. Marielle Crozet’s achievements have been celebrated through numerous awards and recognitions that affirm her excellence in research and scientific innovation. She has been honored for her groundbreaking contributions to analytical chemistry and chemical metrology in the nuclear field. Notably, her collaborative work with leading organizations such as the JRC and IAEA has garnered widespread acclaim, reinforcing her standing as a leading researcher in metrology. Dr. Crozet has also been a pivotal contributor to several award-winning European research initiatives and consultancy projects with Japan, further cementing her reputation as a key figure in advancing nuclear science. Her h-index of 7 highlights her impactful research contributions, which have been widely cited in scientific literature. These accolades reflect Dr. Crozet’s unwavering commitment to precision, innovation, and collaboration in her field, making her a deserving recipient of accolades in scientific excellence and research achievement.

🌍 Research Skills On Chemistry

Dr. Marielle Crozet’s research skills are grounded in her deep expertise in analytical chemistry and chemical metrology, with a specific focus on the nuclear sector. Her proficiency spans designing, developing, and implementing cutting-edge metrological methods to enhance the precision and reliability of chemical analyses. Dr. Crozet’s collaborative work with international organizations such as the JRC and IAEA demonstrates her capability in applying these skills to address complex, multidisciplinary challenges. She has been instrumental in driving innovation in nuclear metrology through her leadership in European and Japanese research projects. With extensive experience in managing cross-cultural research collaborations, Dr. Crozet excels in problem-solving, data analysis, and scientific reporting. Her contributions to analytical chemistry are not only evidenced by her h-index but also by her role in advancing international standards in metrology, showcasing her as a thought leader in the field.

📖 Publication Top Notes

  • Carbon-13 Solid-State NMR Studies on Synthetic Model Compounds of [4Fe− 4S] Clusters in the 2+ State
    Authors: M. Crozet, M. Chaussade, M. Bardet, L. Emsley, B. Lamotte, J.M. Mouesca
    Citations: 33
    Year: 2000
  • Photoinduced addition of dioxygen molecules in the unsaturated sites of the Pd3(dppm)3CO2+ catalyst
    Authors: P.D. Harvey, M. Crozet, K.T. Aye
    Citations: 16
    Year: 1995
  • Use of an excess variance approach for the certification of reference materials by interlaboratory comparison
    Authors: C. Rivier, M. Désenfant, M. Crozet, C. Rigaux, D. Roudil, B. Tufféry, A. Ruas
    Citations: 14
    Year: 2014
  • EQRAIN: uranium and plutonium interlaboratory exercises from 1997 to 2016—comparison to ITVs-2010
    Authors: M. Crozet, D. Roudil, C. Rigaux, C. Bertorello, S. Picart, C. Maillard
    Citations: 11
    Year: 2019
  • 243Am certified reference material for mass spectrometry
    Authors: R. Jakopič, A. Fankhauser, Y. Aregbe, S. Richter, M. Crozet, C. Maillard, …
    Citations: 10
    Year: 2021
  • Separation of actinides by extraction chromatography prior to X-ray fluorescence measurement for analytical control of a PUREX test
    Authors: Mr. Crozet, Mr. Guigue
    Citations: 9
    Year: 2007
  • Absolute and relative measurement of the 243Am half-life
    Authors: M. Marouli, S. Pommé, V. Jobbágy, H. Stroh, R. Van Ammel, A. Fankhauser, …
    Citations: 8
    Year: 2020
  • Radiological characterization in view of nuclear reactor decommissioning: On-site benchmarking exercise of a biological shield
    Authors: M. Herranz, S. Boden, P. Völgyesi, R. Idoeta, W. Broeckx, J.R. González, …
    Citations: 7
    Year: 2021
  • Separation of actinides from fission products by extraction chromatography prior to X-ray fluorescence measurement for analytical control of a PUREX test
    Authors: Mr. Crozet, Mr. Guigue
    Citations: 7
    Year: 2007
  • Controlled Potential Coulometry for the accurate determination of plutonium in the presence of uranium: The role of sulfate complexation
    Authors: G. Canciani, Y. Davrain, M. Crozet, D. Roudil, S. Picart
    Citations: 6
    Year: 2021

Dr. Sergey Adamovich | Chemistry | Research Excellence Award

Dr. Sergey Adamovich | Chemistry | Research Excellence Award

Dr. Sergey Adamovich, A.E. Favorsky Irkutsk Institute of Chemistry, Siberian Branch of the Russian Academy, Russia

S.N. Adamovich is a distinguished chemist renowned for his groundbreaking work in the chemistry of organoelement compounds. A graduate of Irkutsk State University, Adamovich has built a reputable career in the field, contributing significantly to the scientific community through his extensive research and publications. Beginning as a research intern at the Irkutsk Institute of Chemistry of the Siberian Branch of the Russian Academy of Sciences, he steadily advanced to the role of senior research fellow. Along the way, he earned both his candidate and doctoral degrees, demonstrating a deep commitment to the development of innovative solutions in chemistry. His pioneering research and dedication to advancing knowledge in his specialty have earned him widespread recognition and respect among his peers. Today, Adamovich continues to influence the field through his research, inspiring the next generation of chemists.

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Summary of Suitability for the Research for Excellence in Academia Award

Dr. S.N. Adamovich exemplifies a distinguished career in the field of chemistry, showcasing both dedication and expertise in organoelement compounds. His academic journey began at Irkutsk State University, and his subsequent affiliation with the Irkutsk Institute of Chemistry, part of the Russian Academy of Sciences, allowed him to develop and refine his research within a prestigious institution. Advancing through a series of progressively responsible roles—from research intern to senior research fellow—demonstrates his strong commitment to both scientific inquiry and professional development. This progression also highlights his dedication to expanding his expertise, which is a testament to his perseverance and scholarly growth.

 🎓  Education 

S.N. Adamovich pursued his education in chemistry at Irkutsk State University, where he obtained a comprehensive foundation in chemical sciences. Following his studies, he was recommended for an advanced research career at the prestigious Irkutsk Institute of Chemistry, under the Siberian Branch of the Russian Academy of Sciences. Here, he deepened his expertise, particularly focusing on organoelement compounds, which would become the cornerstone of his academic and professional achievements. His dedication and academic rigor led him to complete a candidate dissertation, a significant milestone in Russian academia, and later, a doctoral dissertation in the same specialized field. This educational path allowed Adamovich to acquire a nuanced understanding of complex chemical processes, setting the stage for his influential career and research contributions.

💼 Professional Experience 

Adamovich’s professional journey began at the Irkutsk Institute of Chemistry, where he started as a research intern, gaining hands-on experience in various chemistry disciplines. His hard work and dedication led to rapid advancements: he progressed from an engineer to a junior research fellow, later becoming a research fellow, and ultimately achieving the position of senior research fellow. Throughout his tenure, he focused intensively on the chemistry of organoelement compounds, a niche that has significant implications in industrial and pharmaceutical applications. His contributions to the institute were pivotal in several research projects, helping to pioneer new approaches and methodologies in the field. His practical expertise, coupled with his academic achievements, positioned him as a leading figure at the institute, where he continues to mentor upcoming researchers and drive scientific innovation.

🏅   Awards and Recognition 

Throughout his career, Adamovich has been the recipient of numerous awards and accolades, acknowledging his substantial contributions to the field of chemistry, particularly in organoelement compounds. His work has earned him both national and international recognition, establishing him as a distinguished researcher within the scientific community. Key awards include honors from the Russian Academy of Sciences for his advancements in chemical research, and prestigious medals commemorating his dedication to academic excellence and innovation. Adamovich’s research papers have been widely cited, further amplifying his influence and impact on contemporary chemical studies. These recognitions underscore his unwavering commitment to advancing scientific knowledge and his role as a thought leader in the industry.

🌍 Research Skills

Adamovich possesses advanced research skills with a focus on organoelement chemistry, where he demonstrates mastery in synthesis, compound characterization, and analytical methodologies. His skill set includes sophisticated techniques such as spectrometry, chromatography, and molecular modeling, which he applies to investigate chemical properties and reactions. He is adept at designing and executing complex experiments, analyzing data meticulously, and deriving insights that contribute to innovative solutions. Adamovich is also skilled in academic writing and scientific communication, enabling him to effectively share his findings with the broader research community. His analytical acumen, combined with practical expertise in laboratory settings, makes him a versatile and accomplished researcher, well-respected for his precision, thoroughness, and dedication to advancing chemistry.

📖 Publiaction Top Notes

  • Protatrans – Growth Biostimulants for Centomopathogenic Bacteria Bacillus thuringiensis
  • Yperite-Free Method for the Synthesis of Polydentate Sulfur-Containing Ligands
  • Schiff Base of 3-Aminopropylalkoxysilanes and 3-Aminopropylsilatranes: Importance of Investigations and the Potential Applications
  • Synthesis, Structure, Spectral and Luminescence Studies of Novel Guanidinium Aryl(oxy)(sulfanyl)(sulfonyl)acetates
  • 3-Aminopropyltrietoxysilane and -Silatrane in the Michael Aza-Reaction with Acrylates. Synthesis, Structure, and Properties of Adducts