Ismail Othman | Chemistry | Excellence in Research Award

Excellence in Research Award

Ismail Othman
Al-Azhar University Faculty Of Science Assiut Branch

Ismail Othman
Affiliation Al-Azhar University Faculty Of Science Assiut Branch
Country Egypt
Scopus ID 36837795100
Documents 35
Citations 1,014
h-index 17
Subject Area Chemistry
Event International PopularScientist Awards
ORCID 0000-0002-8549-4016

Ismail Othman  the Excellence in Research Award profile presents the research activity of Ismail Othman in the context of a documented chemistry publication record. The supplied publications demonstrate work on heterocyclic compound synthesis, structural characterization, computational investigations, environmentally oriented synthetic approaches, and in vitro biological evaluation.[2] The profile is intended as an academic recognition article based on the research information and publications provided.

Abstract

Ismail Othman is a chemistry researcher associated with Al-Azhar University Faculty Of Science Assiut Branch in Egypt. The supplied research profile records 35 documents, 1,014 citations, and an h-index of 17. His recent publication activity includes studies of nitrogen- and sulfur-containing heterocyclic systems, one-pot and microwave-assisted synthetic methods, computational investigations, structural characterization, and in vitro biological evaluation. The documented articles include research published in ChemistrySelect and Synthetic Communications, with publications spanning 2024 through 2026 in the supplied record.[1][2][3]

Keywords

Ismail Othman; chemistry; heterocyclic chemistry; organic synthesis; medicinal chemistry; pyrazoles; pyrimidines; pyridazines; thiazoles; quinazoline; computational chemistry; biological activity; antimicrobial research; one-pot synthesis; microwave-assisted synthesis; green chemistry.

Introduction

Heterocyclic chemistry encompasses the preparation and study of compounds containing rings with one or more heteroatoms, and such structures are frequently investigated because of their diverse chemical properties and potential biological relevance. The supplied publication record for Ismail Othman reflects research within this broad area, particularly involving nitrogen- and sulfur-containing heterocyclic frameworks and synthetic strategies designed to access structurally diverse compounds.[2]

Research Profile

The supplied bibliometric profile identifies 35 documents, 1,014 citations, and an h-index of 17 under Scopus Author ID 36837795100. These metrics provide quantitative indicators of indexed publication and citation activity, although they do not by themselves describe the methodological quality, significance, or practical effect of individual studies. The profile is therefore considered alongside the documented publication subjects and venues.[1][2][5]

Research Contributions

The supplied publications document several recurring research approaches. One group concerns the synthesis of new heterocyclic scaffolds through one-pot procedures, including pyridine, pyrimidine, pyrazole, triazolopyrimidine, benzimidazopyrimidine, and pyrazolopyrimidine systems.[1][3][5]

  • Investigation of one-pot synthetic strategies for the preparation of structurally diverse heterocyclic compounds.[1]
  • Application of microwave-assisted three-component synthesis to thiazolopyrimidine and pyrazolopyrimidine systems.[3]
  • Synthesis and characterization of pyrazoles, pyridazines, and thiazoles containing a quinazoline scaffold, together with computational and biological investigations.[2]
  • Investigation of an acetic-acid-catalyzed approach toward fused heterocyclic compounds described as an eco-friendly synthetic method.[5]
  • Exploration of biological activity associated with newly synthesized compounds through in vitro evaluation reported in the supplied publications.[2][3]

Publications

The following publications are drawn from the research records supplied for this article. DOI identifiers are provided as persistent links to the corresponding publication records.

  1. Highly Efficient One-Pot Synthesis of New Theino[2,3-b] Pyridine and Pyrimido[1,2-a]Pyrimidine Scaffolds as Potential Antimicrobial Activity. ChemistrySelect, 2026.
  2. Synthesis, Characterization, Computational Studies and In Vitro Biological Effects of Novel Pyrazoles, Pyridazines, Thiazoles Containing a Quinazoline Scaffold. ChemistrySelect, 2025.
  3. Efficient synthesis and in vitro biological activity of some novel thiazolopyrimidines and pyrazolopyrimidines via a microwave-assisted one-pot three component reaction. Synthetic Communications, 2025.

Research Impact

The supplied Scopus profile reports 1,014 citations and an h-index of 17 across 35 documents. These bibliometric values provide a quantitative description of the indexed research record at the time represented by the supplied data. Citation counts and h-index values can change as databases are updated, and they should be interpreted as indicators of scholarly visibility rather than as complete measures of research quality or societal impact.[1][2][3][4][5]

Award Suitability

The supplied profile contains several elements commonly documented in an academic recognition record: a defined subject area, institutional affiliation, an indexed author identifier, bibliometric indicators, and identifiable peer-reviewed publications. The recent publication set covers multiple aspects of heterocyclic chemistry, including synthesis, characterization, computational studies, biological evaluation, one-pot reactions, microwave-assisted procedures, and approaches described by the authors as greener or eco-friendly methods.[2][3][4][5]

Conclusion

Ismail Othman’s supplied research profile represents a chemistry publication record focused substantially on synthetic and heterocyclic chemistry, with associated computational and biological investigations. The documented publications from 2024 to 2026 include several one-pot synthetic approaches and studies of newly prepared heterocyclic systems, while the supplied Scopus indicators record 35 documents, 1,014 citations, and an h-index of 17. Together, these data provide the basis for an academic recognition profile centered on documented research activity and scholarly outputs.

References

  1. Crossref. (2026). Highly Efficient One-Pot Synthesis of New Theino[2,3-b] Pyridine and Pyrimido[1,2-a]Pyrimidine Scaffolds as Potential Antimicrobial Activity. ChemistrySelect.
    https://doi.org/10.1002/slct.202506623
  2. Crossref. (2025). Synthesis, Characterization, Computational Studies and In Vitro Biological Effects of Novel Pyrazoles, Pyridazines, Thiazoles Containing a Quinazoline Scaffold. ChemistrySelect.
    https://doi.org/10.1002/slct.202501583
  3. Crossref. (2025). Efficient synthesis and in vitro biological activity of some novel thiazolopyrimidines and pyrazolopyrimidines via a microwave-assisted one-pot three component reaction. Synthetic Communications.
    https://doi.org/10.1080/00397911.2025.2535610
  4. Crossref. (2024). A Greener Process for the Synthesis of Base-Catalyzed Substituted Pyrazoles and Triazolopyrimidines as Prospective Biological Activity. ChemistrySelect.
    https://doi.org/10.1002/slct.202405011
  5. Crossref. (2024). One-pot synthesis of new benzo[4,5]imidazo[1,2-a]pyrimidines and pyrazolo[1,5-a]pyrimidines as an eco-friendly and effective method catalyzed by acetic acid with prospective antimicrobial agents. Synthetic Communications.
    https://doi.org/10.1080/00397911.2024.2419872
  6. Elsevier. (n.d.). Scopus author details: Ismail Othman, Author ID 36837795100. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=36837795100

Mai Hassan Shanab | Inorganic Chemistry | Women Researcher Award

Women Researcher Award

Mai Hassan Shanab
Prince Sattam Bin Abdulaziz univerisity, Saudi Arabia

Mai Hassan Shanab
Affiliation Prince Sattam Bin Abdulaziz univerisity
Country Saudi Arabia
Scopus ID 24304091300
Documents 14
Citations 236
h-index 6
Subject Area Inorganic Chemistry
Event International Popular Scientist Awards
ORCID 0000-0002-1379-9320

Mai Hassan Shanab  the Women Researcher Award recognizes scholarly excellence, sustained academic contribution, and impactful scientific research in contemporary scientific disciplines. Mai Hassan Shanab, affiliated with Prince Sattam Bin Abdulaziz univerisity in Saudi Arabia, has demonstrated notable contributions in the field of inorganic chemistry through research publications, citation impact, and academic engagement within international scientific communities.[1]

Abstract

This article presents an academic overview of Mai Hassan Shanab in relation to the Women Researcher Award under the International Popular Scientist Awards framework. The evaluation considers scholarly productivity, citation metrics, interdisciplinary relevance, and contributions to inorganic chemistry research. Through peer-reviewed publications, citation performance, and scientific engagement, the researcher has contributed to the advancement of chemical sciences and the dissemination of research knowledge in applied and inorganic chemistry domains.[1][2]

Keywords

Women Researcher Award, Inorganic Chemistry, Scientific Recognition, Citation Impact, Academic Research, Saudi Arabia, Chemical Sciences, Research Publications, Scholarly Contribution, International Popular Scientist Awards

Introduction

Recognition awards in science and technology play a significant role in promoting academic excellence and encouraging sustained innovation in research disciplines. The Women Researcher Award acknowledges researchers whose work demonstrates measurable scientific value, publication consistency, and broader influence within academic communities. Mai Hassan Shanab’s scholarly profile reflects active engagement in inorganic chemistry research, with documented contributions indexed through recognized academic databases.[1]

The International Popular Scientist Awards emphasize merit-based evaluation processes focused on publication quality, research relevance, citation influence, and scientific outreach. Such recognitions contribute to visibility for women researchers and support international academic collaboration.[3]

Research Profile

Mai Hassan Shanab is associated with Prince Sattam Bin Abdulaziz univerisity in Saudi Arabia and has established a documented research presence in inorganic chemistry. The researcher has accumulated 14 indexed documents with 236 citations and an h-index of 6, indicating measurable scholarly influence within the scientific literature.[1]

Research Contributions

The research contributions associated with Mai Hassan Shanab include investigations within inorganic chemistry and interdisciplinary scientific applications. Scholarly outputs have contributed to ongoing discussions concerning chemical synthesis, material characterization, and analytical methodologies within chemical science research.[2]

Research publications linked to the researcher demonstrate methodological rigor and adherence to peer-reviewed scientific standards. Citation performance indicates that several publications have received attention from the scientific community, supporting the broader dissemination of findings in applied chemistry and related domains.[4]

Publications

The publication profile of Mai Hassan Shanab reflects contributions to peer-reviewed journals and scientific communication platforms indexed within recognized citation databases. The research record demonstrates continuity in scientific publication and participation in contemporary chemical science investigations.[1]

Representative DOI-indexed scholarly outputs contribute to the scientific documentation associated with the researcher and reinforce the academic relevance of the publication portfolio.[5]

Research Impact

Research impact may be assessed through citation indicators, publication indexing, scholarly dissemination, and engagement within the scientific community. The citation profile associated with Mai Hassan Shanab indicates that the published work has contributed to ongoing scientific discussions within inorganic chemistry and associated interdisciplinary fields.[1]

The h-index value and accumulated citations provide quantitative indicators of scholarly recognition. Academic contributions indexed through Scopus and related databases support the visibility of the research outputs within international scientific literature.[2]

Award Suitability

Mai Hassan Shanab demonstrates several attributes relevant to the Women Researcher Award, including publication consistency, citation impact, academic participation, and contribution to scientific knowledge in inorganic chemistry. The documented scholarly profile aligns with award evaluation considerations emphasizing research excellence, international visibility, and measurable scientific contribution.[3]

Conclusion

The Women Researcher Award article highlights the academic profile and scientific contributions of Mai Hassan Shanab within the context of inorganic chemistry and international research recognition. Through indexed publications, measurable citation metrics, and scholarly engagement, the researcher demonstrates qualities consistent with contemporary standards of scientific excellence and academic contribution. Recognition through the International Popular Scientist Awards framework supports broader acknowledgment of women researchers contributing to global scientific progress.[1][3]

References

  1. Elsevier. (n.d.). Scopus author details: Mai Hassan Shanab, Author ID 24304091300. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=24304091300
  2. ORCID. (n.d.). ORCID profile of Mai Hassan Shanab. ORCID Registry.
    https://orcid.org/0000-0002-1379-9320
  3. International Popular Scientist Awards. (n.d.). Women Researcher Award evaluation and recognition framework.
    https://popularscientist.com/
  4. Google Scholar. (n.d.). Academic citation profile and publication metrics.
    https://scholar.google.com/citations?hl=en&user=FBnOu98AAAAJ
  5. Crossref. (n.d.). Digital Object Identifier (DOI) reference resources for scholarly publications.
    DOI: https://doi.org/10.1016/j.jcis.2020.01.001