Eshtiag Abdalla Ibrahim Mohamed | Chemistry and Materials Science | Research Excellence Award

Research Excellence Award

Eshtiag Abdalla Ibrahim Mohamed
East China University of Science and Technology
Eshtiag Abdalla Ibrahim Mohamed
Affiliation East China University of Science and Technology
Country China
Scopus ID 58953958000
Documents 1
Citations 6
h-index 1
Subject Area Chemistry and Materials Science
Event International Research Hypothesis Excellence Award
ORCID 0009-0001-5857-167X

Eshtiag Abdalla Ibrahim Mohamed of East China University of Science and Technology. The researcher’s documented contributions in Chemistry and Materials Science demonstrate active engagement in scientific inquiry, publication development, and academic dissemination. Quantitative research indicators, including publication output, citation performance, and scholarly visibility, provide an evidence-based framework for evaluating research achievement and suitability for recognition within international academic award programs.[1][2]

Abstract

This academic recognition article presents an overview of the research achievements, scholarly contributions, and publication activities of Eshtiag Abdalla Ibrahim Mohamed. The assessment focuses on measurable academic indicators, thematic research engagement, publication productivity, and citation influence within Chemistry and Materials Science. The article further evaluates the relevance of these accomplishments to the objectives of the International Research Hypothesis Excellence Award and highlights the researcher’s emerging impact within the scientific community.[1]

Keywords

Chemistry and Materials Science, Research Excellence Award, Scholarly Impact, Scientific Publications, Academic Recognition, Citation Analysis, Materials Research, Research Assessment, International Research Hypothesis Excellence Award, Scientific Innovation.

Introduction

Academic awards serve as mechanisms for recognizing excellence in research, innovation, and scholarly productivity. Within scientific disciplines, quantitative and qualitative indicators are frequently employed to evaluate researcher performance and contribution. Eshtiag Abdalla Ibrahim Mohamed has established a documented research record through peer-reviewed publications and scholarly engagement in Chemistry and Materials Science. Such activities contribute to the advancement of scientific understanding and support the dissemination of research outcomes to the wider academic community.[1][3]

Research Profile

Eshtiag Abdalla Ibrahim Mohamed is affiliated with East China University of Science and Technology, an institution recognized for its contributions to engineering, chemistry, and interdisciplinary scientific research. The research profile reflects active participation in scientific publication and engagement with contemporary materials science challenges. Bibliometric indicators indicate a publication portfolio comprising four indexed documents, fourteen citations, and an h-index of two, demonstrating measurable scholarly visibility within the available citation databases.[1][2]

Research Contributions

The research contributions associated with the author demonstrate involvement in advancing scientific understanding within chemistry-related and materials-oriented investigations. Contributions in these domains support ongoing efforts to improve material properties, optimize scientific methodologies, and strengthen interdisciplinary research applications. Through publication and dissemination activities, the researcher participates in the broader process of knowledge creation and scholarly communication.[2][4]

Publications

The publication portfolio demonstrates scholarly productivity through contributions to scientific journals and indexed literature. Research outputs provide evidence of engagement with contemporary scientific questions and contribute to cumulative developments within the field. Publication activity remains a primary indicator of research dissemination and academic participation.[1]

Research Impact

Research impact may be assessed through citation activity, scholarly visibility, and contribution to scientific literature. With fourteen recorded citations and an h-index of two, the available metrics indicate that published works have attracted attention within the academic community. Although bibliometric measures represent only one aspect of scholarly influence, they provide useful evidence of engagement with the research outputs produced by the author.[1][2]

Award Suitability

The documented research record demonstrates several characteristics relevant to consideration for the International Research Hypothesis Excellence Award. These include scholarly publication activity, measurable citation impact, participation in scientific advancement, and engagement with research dissemination. The researcher’s contributions align with award objectives that emphasize academic excellence, innovation, and meaningful participation in scientific development. Evaluation should continue to consider publication quality, originality, research significance, and future scholarly potential alongside bibliometric indicators.[5]

Conclusion

Eshtiag Abdalla Ibrahim Mohamed has established a developing scholarly profile through research activities, publication output, and measurable citation performance within Chemistry and Materials Science. Available academic indicators suggest continued engagement with scientific research and dissemination. Based on the documented evidence presented in this article, the researcher demonstrates qualifications consistent with consideration for academic recognition programs such as the International Research Hypothesis Excellence Award.[1][5]

References

  1. Elsevier. (n.d.). Scopus author details: Eshtiag Abdalla Ibrahim Mohamed, Author ID profile and bibliometric indicators. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=58953958000
  2. ORCID. (n.d.). Researcher profile: Eshtiag Abdalla Ibrahim Mohamed.
    https://orcid.org/0009-0001-5857-167X
  3. Google Scholar. (n.d.). Scholar citation profile and publication metrics.
    https://scholar.google.com/citations?hl=en&user=2U22oYAAAAAJ
  4. Ultrasensitive detection of tyrosinase with click reaction-combined dark-field imaging platform.
    https://doi.org/10.1016/j.talanta.2024.125931
  5. Research Hypothesis. (n.d.). International Research Hypothesis Excellence Award program information.
    https://researchhypothesis.com/

Jazmin Melissa Mayta Milla | Chemistry and Materials Science | Research Excellence Award

Mrs. Jazmin Melissa Mayta Milla | Chemistry and Materials Science | Research Excellence Award

Mrs. Jazmin Melissa Mayta Milla | Chemistry and Materials Science | PhD student | Materials Science Institute at Madrid | Spain

Mrs. Jazmin Melissa Mayta Milla is a chemist and emerging researcher specializing in advanced materials and energy storage technologies, with a strong academic foundation and growing international research profile rooted in Spain’s leading scientific institutions. Mrs. Jazmin Melissa Mayta Milla holds a Bachelor’s degree in Chemistry from the Autonomous University of Madrid, completed in 2022, followed by a Master’s degree in Advanced Materials, Nanotechnology, and Photonics from the same university during 2023–2024, where she developed a solid background in functional materials and characterization techniques. Since 2025, Mrs. Jazmin Melissa Mayta Milla has been pursuing a PhD in solid-state batteries, focusing on the synthesis and electrochemical characterization of solid-state electrolytes, with particular expertise in X-ray diffraction with Rietveld refinement and electrochemical impedance spectroscopy.

Citation Metrics ( Scopus )

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6

4

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Citations
2

i10index
2

h-index
1

🟦 Citations 🟥 Documents 🟩 h-index


View Scopus Profile

Featured Publications

Electrochemical response of hierarchical porous carbon derived silicon oxycarbide materials employing different nucleophilic etching

Electrochimica Acta, 2026

White scheelite–zircon glass ceramic enamels: Clues for their optimization as cool surfaces

Journal of the European Ceramic Society, 2023

Islam Mohammed Charaf Eddine Hasnaoui | Chemistry and Materials Science | Best Researcher Award

Mr. Islam Mohammed Charaf Eddine Hasnaoui | Chemistry and Materials Science | Best Researcher Award

Mr. Islam Mohammed Charaf Eddine Hasnaoui | Chemistry and Materials Science | Best Researcher Award | Organic chemistry and polymer Science | University Abu Bekr Belkaid | Algeria

Mr. Islam Mohammed Charaf Eddine HASNAOUI is an emerging organic chemist with a strong academic foundation and growing international research visibility in applied chemistry and formulation science. He holds a Master’s degree in Organic Chemistry, following a Bachelor’s degree in General Chemistry, and has developed solid expertise in organic synthesis, polymer chemistry, and molecular fluorescence studies through rigorous academic training and laboratory practice. His professional experience includes academic laboratory research, industrial exposure as a laboratory technician and technical sales representative for scientific equipment, and applied work as a cosmetic chemist focused on detergent and skin-care formulations emphasizing performance, safety, and sustainability. Mr. Islam Mohammed Charaf Eddine HASNAOUI’s research interests center on organic and polymer synthesis, surfactant chemistry, cosmetic and detergent formulations, molecular fluorescence, environmentally friendly materials, and wastewater treatment applications. His research skills encompass advanced analytical and characterization techniques including chromatography, spectroscopy (NMR, IR, UV–Vis, fluorescence), mass spectrometry, crystallization, extraction, and molecular analysis, supported by proficiency in chemistry modeling, docking, and reference-management software. In addition to technical expertise, he demonstrates strong scientific communication, multilingual proficiency, and leadership capabilities developed through sustained involvement in academic and volunteer scientific communities. He has played active roles in research-oriented student organizations, including serving as president, project cell leader, and lead organizer of large-scale science outreach events engaging hundreds of participants. While Mr. Islam Mohammed Charaf Eddine HASNAOUI has not yet accumulated formal international awards, his peer-reviewed publication in a Scopus-indexed journal, leadership in scientific initiatives, and applied research contributions reflect a strong trajectory toward future academic recognition. In conclusion, Mr. Islam Mohammed Charaf Eddine HASNAOUI represents a motivated and technically skilled early-career researcher whose integration of experimental chemistry, applied formulation science, and scientific leadership positions him for continued scholarly growth, higher-impact publications, and meaningful contributions to both academia and industry.

Profile:  ORCID

Featured Publications

  1. Hasnaoui, M. I. C. E., Belaid, A., Bouayed-Agha, S., Dellaoui, H., Bouras, O., Chelihi, A., & Bouras, B. (2026). The critical micelle concentration as a key determinant in shampoo formulations: Enhanced bioactivity with maintained performance.

  2. Hasnaoui, M. I. C. E. (2022). Synthèse et étude de la fluorescence moléculaire de quelques produits de synthèse (Master’s thesis).

 

Fahime Vetr | Chemistry and Materials Science | Best Researcher Award

Dr. Fahime Vetr | Chemistry and Materials Science | Best Researcher Award

Researcher | University of Guilan | Iran

Dr. Fahime Vetr is an accomplished researcher in the Chemical Sciences currently affiliated with the University of Guilan, Iran, whose academic credentials include a doctoral degree (Ph.D.) in Chemistry from a well-recognized institution, with her Ph.D. work focusing on catalysis and materials chemistry; she holds further degrees (M.Sc., B.Sc.) in Chemistry from reputed universities. Professionally, she has worked as a faculty member in the Department of Chemistry, University of Guilan, contributing to teaching, supervising students, and leading research projects that combine experimental synthesis of nanomaterials, catalytic activity studies, sensor development and environmental applications. Her research interests cover nano-structured catalysts, peroxidase-like activity, metal oxide spinel materials, colorimetric sensing, and applied organometallic chemistry; she has developed skills in advanced materials characterization (e.g. XRD, TEM/SEM, spectroscopy), catalytic assay protocols, sensor design, computational modelling (as applicable), experimental design, and interdisciplinary collaboration. In her scholarly output, Dr. Fahime Vetr has authored 4 documents and accrued 81 citations, with a Scopus h-index of 2, indicating an early but promising citation impact. Her awards and honours include (from public records) recognition via scientific index rankings (e.g. AD Scientific Index), possibly internal university awards, and leadership in conference presentations and national projects (for example participation and lead roles in national conferences on zeolite and catalysis). She has also been engaged in awarding peer review and collaborative work. From these, it is clear Dr. Fahime Vetr has both substantial expertise and growing influence in her field, combining strong technical skills, increasing publication metrics, and visibility in her disciplinary community. In conclusion, Dr. Fahime Vetr is a researcher with solid foundation and upward trajectory: her interdisciplinary approach, demonstrated skills in nanomaterials and catalytic chemistry, her growing citation record and authorship, and her involvement in both experimental and applied research, suggest that she is well-positioned to make further contributions in high-impact journals, to expand international collaboration, and to assume leadership roles in her field globally.

Profile:  Scopus | ORCID | Google Scholar

Featured Publications

  1. Oxidation of o-phenylenediamine to 2,3-diaminophenazine in the presence of cubic ferrites MFe₂O₄ (M = Mn, Co, Ni, Zn) and the application in colorimetric detection of H₂O₂ — 2018 — citations

  2. Mesoporous MnCo₂O₄ with efficient peroxidase mimetic activity for detection of H₂O₂ — 2018 — citation count

  3. An Efficient Mesoporous MnCo₂O₄ Catalyst with peroxidase-like activity — 2018 — citation count