Naresh Konduru | Chemistry | Best Researcher Award

 

Best Researcher Award

Naresh Konduru
MASUU Global Solutions Pvt Ltd, India

Naresh Konduru
Affiliation MASUU Global Solutions Pvt Ltd
Country India
Scopus ID 57200528602
Documents 25
Citations 385
h-index 12
Subject Area Chemistry
Event International Academic Excellence Awards
ORCID 0000-0003-0815-9238

Naresh Konduru is a chemistry researcher whose publication record focuses on analytical methods, pharmaceutical quality assessment, impurity determination, stability studies, and analytical quality by design. The available research profile records 25 documents, 385 citations, and an h-index of 12. Recent publications demonstrate continued engagement with analytical challenges associated with pharmaceutical substances and drug products.

Abstract

Naresh Konduru’s research profile is centered on analytical chemistry applied to pharmaceutical development and quality control. His recent work addresses inorganic impurity quantification, process- and degradation-related impurities, antimicrobial-agent estimation, stability-indicating chromatography, and robustness assessment using analytical quality by design principles. These studies illustrate the application of instrumental and chromatographic techniques to improve analytical reliability and pharmaceutical quality evaluation. [1][2]

Keywords

Analytical chemistry; pharmaceutical analysis; liquid chromatography; ICP-MS; impurity profiling; stability-indicating methods; analytical quality by design; method validation; drug substances; drug products.

Introduction

Pharmaceutical analytical chemistry supports the identification, measurement, and control of substances that can influence drug quality, safety, and performance. Recent publications associated with Konduru examine analytical problems across anticancer medicines, tuberculosis treatment products, semisolid formulations, and diabetes-related pharmaceuticals. The work reflects a methodological emphasis on sensitive measurement, stability evaluation, validation, and robustness.

Research Profile

The profile identifies Chemistry as the principal subject area. The reported Scopus record contains 25 documents and 385 citations, with an h-index of 12. These bibliometric indicators provide a quantitative description of the indexed research record and should be interpreted alongside publication quality, methodological contribution, and relevance to the field.

Research Contributions

  • Quantitative determination of inorganic impurities using ICP-MS in pharmaceutical drug substances. [1]
  • Development of robust LC methods for process- and degradation-related impurities. [2]
  • Application of stability-indicating chromatographic methods and analytical quality by design principles. [4]

Publications

  • Quantification of 24 inorganic impurities in vismodegib and idelalisib anticancer drug substances using ICP-MS — Journal of AOAC International, 2026.[1]
  • Quality by Design-Based Development of a Robust LC Method for Simultaneous Estimation of Process- and Degradation-Related Impurities in Rifapentine Drug Product — Biomedical Chromatography, 2026. [2]
  • Estimation of Antimicrobial Agent (Sorbic Acid) in Semisolid Dosage Form — Biomedical Chromatography, 2026. [3]
  • Development and Validation of a Stability-Indicating LC Method for the Determination of Empagliflozin-Related Substances — Separation Science Plus, 2026. [4]
  • Development and Validation of a Stability-Indicating Liquid Chromatographic Method for Darolutamide and Its Degradation Impurities — Separation Science Plus, 2025. [5]

Research Impact

The reported citation count of 385 and h-index of 12 indicate measurable scholarly visibility within the indexed research record. More specifically, the recent publications address practical analytical requirements in pharmaceutical research, including impurity control, formulation stability, method robustness, and quantitative analysis. [1][5]

Award Suitability

The available record provides a substantive basis for consideration for the Best Researcher Award within Chemistry. Relevant factors include a documented publication portfolio, indexed scholarly output, citation activity, and recent research addressing contemporary pharmaceutical analytical challenges. Award assessment should additionally consider originality, methodological rigor, independent contribution, and broader research significance.

Conclusion

Naresh Konduru’s research profile demonstrates sustained activity in analytical chemistry, particularly in pharmaceutical impurity analysis, chromatographic method development, stability assessment, and quality by design. The combination of publication activity and reported citation indicators supports consideration within the International Academic Excellence Awards framework.

References

  1. Elsevier. (n.d.). Scopus author details: Naresh Konduru, Author ID 57200528602. Scopus.
    Scopus Author Profile
  2. Konduru, N. et al. (2026). Quality by Design-Based Development of a Robust LC Method for Simultaneous Estimation of Process- and Degradation-Related Impurities in Rifapentine Drug Product. Biomedical Chromatography.
    https://doi.org/10.1002/bmc.70430
  3. Konduru, N. et al. (2026). Estimation of Antimicrobial Agent (Sorbic Acid) in Semisolid Dosage Form. Biomedical Chromatography.
    https://doi.org/10.1002/bmc.70412
  4. Konduru, N. et al. (2026). Development and Validation of a Stability-Indicating LC Method for the Determination of Empagliflozin-Related Substances. Separation Science Plus.
    https://doi.org/10.1002/sscp.70182
  5. Konduru, N. et al. (2025). Development and Validation of a Stability-Indicating Liquid Chromatographic Method for Darolutamide and Its Degradation Impurities. Separation Science Plus.
    https://doi.org/10.1002/sscp.70158

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