Mohamed Karmaoui | Chemistry | Editorial Board Member

Editorial Board Member

Mohamed Karmaoui
USTO-MB, Algeria

Mohamed Karmaoui
Affiliation USTO-MB
Country Algeria
Scopus ID 14622536000
Documents 30
Citations 1,071
h-index 16
Subject Area Chemistry
Event International Academic Excellence Awards
ORCID 0000-0002-2288-6290

Mohamed Karmaoui is a chemistry researcher affiliated with USTO-MB in Algeria. His indexed research record includes work on solid-state materials, magnetic nanocrystals, zeolite-based remediation, and structural, optical, and electrical properties of functional materials. The supplied bibliographic profile records 30 documents, 1,071 citations, and an h-index of 16.

Abstract

Mohamed Karmaoui’s research profile is centered on chemistry and functional materials, with publications addressing structural characterization, magnetic behavior, electrical properties, optical properties, and environmental applications. His reported publications include studies of cobalt ferrite nanocrystals, pyrochlore-type solid solutions, and magnetically modified zeolites for cesium removal from contaminated water. [1]

Keywords

Chemistry; solid-state materials; nanocrystals; magnetic materials; zeolite; environmental remediation; electrical properties; optical properties; pyrochlore structure.

Introduction

Karmaoui’s listed research demonstrates an interdisciplinary connection between materials chemistry, solid-state characterization, nanomaterials, and environmental applications. His publication record spans studies published between 2019 and 2026, providing evidence of continued engagement with materials-focused chemical research. [2]

Research Profile

The supplied Scopus information identifies Chemistry as the principal subject area. The profile records 30 documents, 1,071 citations, and an h-index of 16. These indicators provide a quantitative overview of the indexed research output and citation activity associated with the supplied author record.

Research Contributions

  • Investigation of structural, optical, and electrical properties of complex polycrystalline solid solutions.
  • Development and characterization of multipod-shaped cobalt ferrite nanocrystals with magnetic properties. [3]
  • Application of superparamagnetically modified zeolite chabazite for cesium removal from radioactively contaminated water. [4]

Publications

Structure and electrical properties of the solid solution (2026), preprint, DOI 10.2139/ssrn.6553214. [5]

One-pot synthesis of superparamagnetically modified zeolite chabazite for removal of Cs+ from radioactively contaminated water (2023), APL Materials, DOI 10.1063/5.0139282.

Structural, optical and electrical study of new polycrystalline Bi1.5-xCexSb1.5CuO7 solid solution fractions with pyrochlore-type structure (2022), Journal of Solid State Chemistry, DOI 10.1016/j.jssc.2022.123189.

Synthesis and Characterization of New Polycrystalline Bi1.5-xCexSb1.5CuO7 Solid Solution Series with Pyrochlore-Type Structure (2022), preprint, DOI 10.2139/ssrn.4064696.

Synthesis, structure and magnetic properties of multipod-shaped cobalt ferrite nanocrystals (2019), New Journal of Chemistry, DOI 10.1039/C9NJ02237F.

Research Impact

The reported citation count and h-index indicate that Karmaoui’s indexed publications have received substantial scholarly attention. His research also connects fundamental materials characterization with potential environmental applications, particularly through magnetic zeolite systems designed for radionuclide-related water treatment. [4]

Award Suitability

Based on the supplied academic profile, publication record, subject area, and bibliometric indicators, Karmaoui’s research background is relevant to recognition within an academic excellence program focused on chemistry and materials research. The assessment should remain subject to the formal eligibility and evaluation criteria of the International Academic Excellence Awards.

Conclusion

Mohamed Karmaoui’s documented research encompasses functional materials, solid-state chemistry, nanocrystals, magnetic systems, and environmental remediation. His supplied scholarly indicators and publication portfolio provide a substantive basis for consideration as an editorial board member and for academic recognition in Chemistry.

References

  1. Elsevier. (n.d.). Scopus author details: Mohamed Karmaoui, Author ID 14622536000. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=14622536000
  2. Elsevier. (n.d.). Scopus Author Profile: Mohamed Karmaoui. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=14622536000
  3. Royal Society of Chemistry. (2019). Synthesis, structure and magnetic properties of multipod-shaped cobalt ferrite nanocrystals. New Journal of Chemistry. DOI: 10.1039/C9NJ02237F
  4. APL Materials. (2023). One-pot synthesis of superparamagnetically modified zeolite chabazite for removal of Cs+ from radioactively contaminated water. DOI: 10.1063/5.0139282
  5. SSRN. (2026). Structure and electrical properties of the solid solution. Preprint. DOI: 10.2139/ssrn.6553214

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

Google Scholar

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.