Fatima Zahra Janani | Environmental Chemistry | Best Researcher Award

Best Researcher Award

Fatima Zahra Janani
University Sultan Moulay Slimane, Morocco

Fatima Zahra Janani
Affiliation University Sultan Moulay Slimane
Country Morocco
Scopus ID 57221292976
Documents 17
Citations 426
h-index 10
Subject Area Environmental Chemistry
Event International Chemistry Scientist Awards

Fatima Zahra Janani is an environmental chemistry researcher affiliated with University Sultan Moulay Slimane in Morocco. Her scholarly profile is associated with 17 documents, 426 citations, and an h-index of 10 according to the supplied Scopus information. Her research record provides a basis for consideration in the Best Researcher Award category within the International Chemistry Scientist Awards.

Abstract

Fatima Zahra Janani is an environmental chemistry researcher at University Sultan Moulay Slimane, Morocco, whose scholarly profile reflects sustained engagement with chemistry-related research and scientific communication. The supplied Scopus record identifies 17 documents, 426 citations, and an h-index of 10. These indicators provide a quantitative overview of her indexed research activity and scholarly visibility. Her subject-area classification in Environmental Chemistry places her work within a field concerned with chemical processes, environmental systems, pollutants, and sustainable approaches to environmental challenges. The Best Researcher Award recognizes researchers whose documented contributions demonstrate scholarly productivity, research relevance, and measurable academic impact. Janani’s available bibliometric profile offers an evidence-based foundation for evaluating her candidature alongside qualitative assessment of research contributions, publication quality, originality, and broader scientific significance. The recognition is associated with the International Chemistry Scientist Awards, providing an international context for consideration of researchers working across chemistry and related disciplines.[2]

Keywords

Best Researcher Award, Fatima Zahra Janani, Environmental Chemistry, University Sultan Moulay Slimane, Morocco, Scopus, Research Impact, Scholarly Productivity, Environmental Research, Chemistry Awards

Introduction

Environmental chemistry examines chemical processes occurring within natural and human-impacted environments and contributes to understanding contamination, transformation, and sustainability. Researchers in this field often work across analytical chemistry, environmental monitoring, materials, remediation, and related disciplines. Janani’s supplied academic profile places her within this broad research domain at University Sultan Moulay Slimane. [1]

Research Profile

The available profile identifies Fatima Zahra Janani with University Sultan Moulay Slimane in Morocco and assigns Environmental Chemistry as the principal subject area. Her supplied Scopus identifiers include author ID 57221292976, 17 indexed documents, 426 citations, and an h-index of 10. These metrics provide a concise bibliometric representation of her research record. [1]

Research Contributions

Janani’s research profile is positioned within Environmental Chemistry, a multidisciplinary area requiring integration of chemical principles with environmental assessment and problem solving. Her documented publication activity indicates participation in scholarly research within this subject area. Detailed evaluation of individual contributions should consider article-level evidence, methodological rigor, originality, collaboration, and relevance to environmental chemistry. [1]

Publications

The supplied Scopus record reports 17 documents associated with Fatima Zahra Janani. This publication count indicates an established indexed research output, while the citation total of 426 suggests that the published work has received measurable scholarly attention. Individual publication titles, journals, dates, co-authors, and DOI identifiers were not supplied and should be verified directly through authoritative bibliographic records. [2]

Research Impact

Research impact can be assessed through complementary quantitative and qualitative evidence. Janani’s supplied bibliometric indicators include 426 citations and an h-index of 10, providing measurable evidence of scholarly visibility in indexed literature. These indicators should be interpreted alongside publication quality, citation context, research originality, collaboration, and practical or scientific relevance. [1]

Award Suitability

The supplied academic indicators make Janani a candidate for consideration for the Best Researcher Award. Her affiliation, Environmental Chemistry specialization, indexed document count, citation record, and h-index provide identifiable evidence for an initial scholarly assessment. Final award suitability should additionally consider verified publications, originality, research quality, academic leadership, societal relevance, and supporting nomination documentation.[2]

Conclusion

Fatima Zahra Janani’s supplied Scopus profile presents a measurable record of research activity in Environmental Chemistry, supported by 17 documents, 426 citations, and an h-index of 10. Her affiliation with University Sultan Moulay Slimane establishes an academic context for this work. The profile provides relevant evidence for consideration within the Best Researcher Award, subject to independent verification and qualitative assessment.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Fatima Zahra Janani, Author ID 57221292976. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57221292976
  2. El Harmouchi, H., Janani, F. Z., Alami, S., Moumouche, O., Elouhabi, N., Barka, N., & Harcharras, M. (n.d.). Synthesis, characterization and photocatalytic activity of ZnCuP₂O₇/TiO₂ composite for degradation of methyl orange (MO) under UV-irradiation.
    https://www.sciencedirect.com/science/article/abs/pii/S187610702600180X

Dr. Yan Xue | Environmental Chemistry | Sustainable Chemistry Award

Dr. Yan Xue | Environmental Chemistry | Sustainable Chemistry Award

Dr. Yan Xue , Nanjing Agricultural University , China

Dr. Yan Xue is a researcher at Nanjing Agricultural University, specializing in environmental nanomaterials. His research focuses on the high-value utilization of green composite nanomaterials derived from modified graphene/graphene-like biochar-based materials. Dr. Xue explores real-time environmental monitoring, remediation of complex environmental conditions, and the development of energy storage devices such as supercapacitors and ionic batteries. His work aligns with global sustainability goals, emphasizing waste-to-waste treatment strategies and eco-friendly material applications. He has contributed significantly to the fields of electrocatalysis, intelligent energy management, and lignocellulose conversion, publishing multiple high-impact research papers.

Professional Profile : 

Orcid

Summary of Suitability for Award:

Dr. Yan Xue is an exceptional candidate for the “Sustainable Chemistry Award” due to his pioneering research in environmental nanomaterials and green chemistry applications. His work focuses on the high-value utilization of biomass-derived functional materials, aligning perfectly with the principles of sustainability, circular economy, and green chemistry. He has contributed significantly to waste-to-waste treatment strategies, converting agricultural and industrial biomass into high-performance materials for environmental remediation, electrochemical sensing, and energy storage applications. His research also supports carbon neutrality and sustainable energy solutions, making a strong impact on global environmental goals. Dr. Yan Xue’s contributions to sustainable chemistry, nanotechnology, and green energy solutions demonstrate scientific excellence and real-world impact. His research addresses critical environmental challenges through eco-friendly material synthesis, pollutant remediation, and sustainable energy storage. Given his innovative approach, interdisciplinary expertise, and commitment to green chemistry, he is a highly suitable candidate for the “Sustainable Chemistry Award”.

🎓Education:

Dr. Yan Xue pursued his academic journey with a strong focus on environmental sciences and materials chemistry. He obtained his doctoral degree from Nanjing Agricultural University, where he specialized in graphene-based biochar nanomaterials. His education was rooted in green chemistry, electrochemical energy storage, and sustainable material applications. His thesis emphasized the modification of biochar-derived nanomaterials for enhanced environmental performance and energy conversion efficiency. With a deep interest in sustainable chemistry and intelligent energy systems, Dr. Xue’s academic training laid a solid foundation for his ongoing research in eco-friendly functional materials.

🏢Work Experience:

Dr. Yan Xue has extensive research experience in high-value biomass utilization, electrocatalysis, and green energy applications. His expertise includes preparing and functionalizing graphene-based nanomaterials for energy storage and environmental monitoring. He has worked on tunable biochar modifications for real-time sensing and remediation of pollutants. Additionally, Dr. Xue has contributed to the development of bio-based energy devices, including supercapacitors and ionic batteries. His interdisciplinary approach integrates materials chemistry, nanotechnology, and environmental sciences to develop innovative solutions for sustainable energy and pollution control.

🏅Awards: 

Dr. Yan Xue has been recognized for his contributions to green materials research and environmental nanotechnology. His work in waste-derived nanomaterials has received accolades in academic and industrial settings. He has been cited in high-impact journals, reflecting his significant contributions to sustainable chemistry and advanced materials. His research in biochar-based nanomaterials has positioned him among emerging leaders in eco-friendly energy storage solutions.

🔬Research Focus:

Dr. Yan Xue’s research primarily focuses on environmental nanomaterials, emphasizing the high-value utilization of biomass-derived functional materials for sustainable applications. His work explores the synthesis, modification, and application of graphene/graphene-like biochar-based nanomaterials to address critical environmental challenges. He specializes in the development of advanced electrochemical sensors, pollutant remediation systems, and green energy storage solutions, integrating principles of electrocatalysis, intelligent energy management, and nanotechnology. Dr. Xue is particularly interested in waste-to-waste treatment strategies, converting agricultural and industrial biomass into high-performance nanomaterials for supercapacitors, ionic batteries, and pollutant detection systems. His research also extends to functional nanocomposites, such as metallic-like boron-doped biochar, porphyrin-modified nanocatalysts, and hybrid carbon nanostructures, for enhanced electrocatalytic performance and environmental sensing. By merging materials chemistry, environmental science, and nanotechnology, Dr. Xue contributes to the development of eco-friendly, cost-effective, and scalable solutions for sustainable energy and pollution control.

Publication Top Notes:

Enhancing capacitive performance through solvent-coupled two-step carbonization of cotton stalk biochar with tunable melamine doping: Deciphering the redox activity of pyrrolic nitrogen

Authors: Yan Xue, [Additional authors not specified]

Journal: International Journal of Hydrogen Energy

Publication Date: March 2025

DOI: 10.1016/j.ijhydene.2025.02.057

New insights into temperature-induced mechanisms of copper adsorption enhancement on hydroxyapatite-in situ self-doped fluffy bread-like biochar

Authors: Yan Xue, [Additional authors not specified]

Journal: Chemical Engineering Journal

Publication Date: January 2024

DOI: 10.1016/j.cej.2023.147657

Efficiently catalytic degradation of tetracycline via persulfate activation with plant-based biochars: Insight into endogenous mineral self-template effect and pyrolysis catalysis

Authors: Yan Xue, [Additional authors not specified]

Journal: Chemosphere

Publication Date: October 2023

DOI: 10.1016/j.chemosphere.2023.139309

Metallic-like boron-modified bio-carbon electrodes for simultaneous electroanalysis for Cd²⁺, Pb²⁺ and Cu²⁺: Theoretical insight into the role of CxBOy(H)

Authors: Yan Xue, [Additional authors not specified]

Journal: Carbon

Publication Date: October 2023

DOI: 10.1016/j.carbon.2023.118350

Highly selective colorimetric platinum nanoparticle-modified core-shell molybdenum disulfide/silica platform for selectively detecting hydroquinone

Authors: Yan Xue, [Additional authors not specified]

Journal: Advanced Composites and Hybrid Materials

Publication Date: August 2023

DOI: 10.1007/s42114-023-00719-z

Pt deposited on sea urchin-like CuCo₂O₄ nanowires: Preparation, the excellent peroxidase-like activity and the colorimetric detection of sulfide ions

Authors: Yan Xue, [Additional authors not specified]

Journal: Journal of Environmental Chemical Engineering

Publication Date: April 2022

DOI: 10.1016/j.jece.2022.107228

Porphyrin-Modified NiS₂ Nanoparticles Anchored on Graphene for the Specific Determination of Cholesterol

Authors: Yan Xue, [Additional authors not specified]

Journal: ACS Applied Nano Materials

Publication Date: November 26, 2021

DOI: 10.1021/acsanm.1c02318

V₂O₅-montmorillonite nanocomposites of peroxidase-like activity and their application in the detection of H₂O₂ and glutathione

Authors: Yan Xue, [Additional authors not specified]

Journal: Applied Clay Science

Publication Date: September 2020

DOI: 10.1016/j.clay.2020.105718