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

Jung Hoon Song | Chemistry | Best Researcher Award

Best Researcher Award

Jung Hoon Song

Mokpo National University, South Korea

Jung Hoon Song
Affiliation Mokpo National University
Country South Korea
Scopus Id 7404787858
Documents 169
Citation 4,287
h-index 32
Subject Area Chemistry
Event International Popular Scientist Awards
Orcid 0000-0002-4773-113X

Jung Hoon Song is presented as a candidate for the Best Researcher Award at the International Popular Scientist Awards, based on the supplied bibliometric profile and recent scholarly contributions in chemistry and closely related materials, semiconductor, photonics, and nanoscale research. The profile reports 169 indexed documents, 4,287 citations, and an h-index of 32, providing quantitative indicators of sustained scholarly activity and research visibility. [1]

Abstract

Jung Hoon Song’s research profile reflects sustained scholarly activity spanning chemistry and interdisciplinary research involving gallium nitride (GaN), semiconductor materials, Raman spectroscopy, photonics, defect-related optical phenomena, and single-photon emitters. The supplied bibliometric record lists 169 documents, 4,287 citations, and an h-index of 32. [1] Recent publications associated with Song examine temperature-dependent behavior of defect-related single-photon emitters, strain distribution in GaN-based power transistors, Raman thermometry for P-GaN/AlGaN/GaN high-electron-mobility transistors, and single-photon extraction through radiative mode conversion. [2] [3] [4] [5]

Keywords

Jung Hoon Song; Best Researcher Award; Chemistry; Semiconductor Materials; Gallium Nitride; GaN; Raman Spectroscopy; Photonics; Single-Photon Emitters; Defect Physics; Power Transistors; Raman Thermometry; Materials Science; International Popular Scientist Awards.

Introduction

Research in contemporary chemistry increasingly intersects with materials science, semiconductor engineering, spectroscopy, nanotechnology, and photonics. Within this interdisciplinary environment, studies of semiconductor materials such as GaN involve chemical composition, defects, strain, thermal behavior, optical properties, and device performance. Song’s recent publication record illustrates this intersection through investigations of GaN-based systems and optical phenomena.

One 2025 study examined temperature-dependent emission properties of defect-based single-photon emitters in GaN and considered possible interactions between phonons and electrons. The publication identifies Song as a corresponding author and provides.[2]

Research Profile

The supplied research profile places Jung Hoon Song within the chemistry subject area while the listed publications demonstrate substantial interdisciplinary engagement with semiconductor materials and photonic technologies. The reported Scopus indicators comprise 169 documents, 4,287 citations, and an h-index of 32. [1] Such metrics are commonly used as descriptive indicators of publication activity and citation visibility, although they should be interpreted alongside research quality, originality, collaboration, and broader scholarly contributions.

Research Contributions

A notable theme in the recent publication record is the characterization of GaN-based materials and devices using optical and spectroscopic techniques. Surface-enhanced Raman spectroscopy has been applied to investigate strain distributions in GaN-based power transistors, with the reported study examining how buffer-layer structures influence strain evolution in GaN epilayers. [3]

Publications

The following publications were supplied as representative recent works associated with Jung Hoon Song:

  1. Temperature Dependent Behavior of Defect Related Single Photon Emitters in GaN and their Interaction with Phonons. Physica Status Solidi (B): Basic Research, 2025.[2]
  2. Effect of the Buffer Layers on the Strain Distribution in GaN-Based Power Transistors using Surface-Enhanced Raman Spectroscopy. Physica Status Solidi (B): Basic Research, 2025.[3]
  3. Simultaneous Submicron Temperature Mapping of Substrate and Channel in P-GaN/AlGaN/GaN HEMTs Using Raman Thermometry. Applied Sciences, 2025, 15(14), 7860.[4]
  4. Boosting Single-Photon Extraction Efficiency in GaN Through Radiative Mode Conversion. Laser & Photonics Reviews, 2025, 19(10), Article 2401966.[5]
  5. Anomalous Photocurrent Reversal Due to Hole Traps in AlGaN-Based Deep-Ultraviolet Light-Emitting Diodes. Publication details were included in the supplied research record; bibliographic information is not reproduced here where it was not provided.

Research Impact

The reported citation profile of 4,287 citations and an h-index of 32 indicates a substantial level of scholarly visibility within the supplied Scopus record. [1] The publication examples also show research spanning fundamental material behavior, device-level characterization, thermal measurement, optical spectroscopy, and single-photon photonics. This breadth is relevant to interdisciplinary research environments in which chemical and materials properties directly influence semiconductor and photonic-device performance.[2] [3] [4] Work on radiative mode conversion further connects GaN materials research with quantum-photonic applications. [5]

Award Suitability

Based on the supplied profile, Jung Hoon Song demonstrates several characteristics relevant to consideration for a Best Researcher Award. These include a substantial indexed publication record, a reported h-index of 32, thousands of citations, and recent peer-reviewed publications addressing technically significant questions in semiconductor materials, spectroscopy, photonics, and GaN-based technologies. [1]

  • Research productivity: The supplied Scopus profile reports 169 documents.
  • Research visibility: The supplied record reports 4,287 citations and an h-index of 32.
  • Interdisciplinary scope: Recent work connects chemistry and materials research with semiconductor physics, spectroscopy, photonics, and device engineering.

Conclusion

Jung Hoon Song’s supplied academic profile presents a researcher with substantial bibliometric activity and a recent body of interdisciplinary work focused on advanced semiconductor and photonic materials. The reported Scopus metrics of 169 documents, 4,287 citations, and an h-index of 32 provide quantitative indicators of research visibility. [1] His recent publications address GaN defect-related single-photon emitters, strain characterization, Raman thermometry, and photon-extraction technologies, illustrating a research program that connects fundamental materials characterization with emerging device and quantum-photonic applications. [2] [3] [4] [5]

References

  1. Elsevier. (n.d.). Scopus author details: Jung Hoon Song, Author ID 7404787858. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=7404787858
  2. Choi, G. E., Kim, J., Park, J.-K., Choi, M. S., Jang, S. M., Lee, G. J., Lim, S., & Song, J.-H. (2025). Temperature Dependent Behavior of Defect Related Single Photon Emitters in GaN and their Interaction with Phonons. Physica Status Solidi (B): Basic Research, 262, e2500247.
    DOI: https://doi.org/10.1002/pssb.202500247
  3. Kang, J. S., Park, J. K., Kim, J., Choi, G. E., Moon, Y., Bae, D. G., Lim, S., Bae, S.-B., & Song, J.-H. (2025). Effect of the Buffer Layers on the Strain Distribution in GaN-Based Power Transistors using Surface-Enhanced Raman Spectroscopy. Physica Status Solidi (B): Basic Research, 262, 2500124.
    DOI: https://doi.org/10.1002/pssb.202500124
  4. Kim, J., Lim, S., Choi, G. E., Park, J.-K., Cha, H.-Y., Kwak, C.-H., Lim, J., Moon, Y., & Song, J.-H. (2025). Simultaneous Submicron Temperature Mapping of Substrate and Channel in P-GaN/AlGaN/GaN HEMTs Using Raman Thermometry. Applied Sciences, 15(14), 7860.
    DOI: https://doi.org/10.3390/app15147860
  5. Hong, K. S., Lim, H.-J., Ko, Y.-H., Kim, K.-J., Lee, J., Song, J.-H., Kim, S.-H., Choi, J., Lee, S.-G., & Lee, W.-J. (2025). Boosting Single-Photon Extraction Efficiency in GaN Through Radiative Mode Conversion. Laser & Photonics Reviews, 19(10), Article 2401966.
    DOI: https://doi.org/10.1002/lpor.202401966

Fakhar Zaman | Electrochemistry | Research Excellence Award

Dr. Fakhar Zaman | Electrochemistry | Research Excellence Award

Researcher | Beijing University of Chemical Technology| China

Dr. Fakhar Zaman is a chemistry researcher specializing in biomass conversion, nanomaterials, and electrochemical energy storage, with recognized contributions to advanced carbon synthesis, thermochemical transformation, and battery materials innovation. His work integrates pyrolysis kinetics, waste valorization, and carbon engineering to develop high-performance materials for lithium–sulfur, lithium-ion, and zinc-based systems. He has produced impactful publications, advancing sustainable energy and biomass-derived functional materials. His expertise spans electrochemical diagnostics, thermal analysis, and catalytic processes, complemented by strong laboratory leadership and interdisciplinary collaboration. His research continues to shape emerging solutions in renewable materials, electrochemistry, and next-generation energy technologies.

Citation Metrics (Scopus)

400
300
200
100
0

Citations
355

Documents
21

h-index
11

🟦 Citations    🟥 Documents    🟩 h-index


View Scopus Author Profile

Featured Publications

Ho Soonmin | Chemistry and Materials Science | Excellence in Scientific Innovation Award

Prof. Dr. Ho Soonmin | Chemistry and Materials Science | Excellence in Scientific Innovation Award

Professor INTI International University Malaysia

Professor Dr. Ho Soon Min, Ph.D., ChM, MWRA, STRA, is a renowned academic currently serving as a Professor at INTI International University, Malaysia, since April 2010. He is an expert in materials chemistry with extensive research in the development and characterization of thin films and their applications in solar cells and photovoltaics. Throughout his career, Professor Ho has actively contributed to the scientific community through his numerous publications, research projects, and conference presentations. 🌟

Profile

Google Scholar

Education

Professor Ho earned his Bachelor’s degree (B.Sc. Hons.) in Chemistry from the University Putra Malaysia in 2001. He went on to complete his M.Sc. in Materials Chemistry from the same institution in 2003, followed by a Ph.D. in Materials Chemistry in 2010. 🎓

Experience

Professor Ho’s academic journey has spanned over two decades, with his professional experience including roles such as an Associate Professor at INTI International University since 2010. His expertise in materials chemistry has been recognized in both local and international research circles. Additionally, Professor Ho worked at Laju Carbon Products Sdn Bhd from 2003 to 2006, where he honed his practical knowledge in the field. 🏫

Research Interest

Professor Ho’s research primarily focuses on the preparation, characterization, and application of thin films, particularly in the development of materials for energy-related technologies like solar cells. His work also delves into the study of metal sulfide films, such as nickel lead sulfide and cobalt selenide, and their potential in power conversion devices. 🌱

Awards

Professor Ho has received multiple research grants and awards for his contributions to material science. Notably, he has been awarded several national-level research grants from INTI International University to support his groundbreaking work in thin film technologies. 🏆

Publications Top Notes:

Professor Ho has published numerous articles in respected journals, with notable works including:

XRD and AFM studies of ZnS thin films produced by electrodeposition method

Investigation of solar energy: The case study in Malaysia, Indonesia, Colombia and Nigeria

Low-cost adsorbents for the removal of phenol/phenolics, pesticides, and dyes from wastewater systems: A review

Effects of deposition period on the properties of FeS2 thin films by chemical bath deposition method

Composition, morphology and optical characterization of chemical bath deposited ZnSe thin films

Chemical bath deposition of nickel sulphide (Ni4S3) thin films. ,

Effect of bath temperature on the chemical bath deposition of PbSe thin films

You can explore more of his publications and contributions to material science on Google Scholar and ResearchGate. 📖