HASSAN ZALI BOEINI | Organic Chemistry | Innovative Research Award

Innovative Research Award

Hassan Zali Boeini
University of Isfahan, Iran
Hassan Zali Boeini
Affiliation University of Isfahan
Country Iran
Scopus ID 16231972200
Documents 56
Citations 898
h-index 19
Subject Area Organic Chemistry
Event International Analytical Chemistry Awards

Hassan Zali Boeini is a researcher in organic chemistry affiliated with the University of Isfahan, Iran. His published research record includes work in synthetic organic chemistry, heterocyclic synthesis, green chemistry, thioester chemistry, functional materials, and chemical sensing. Publicly indexed publications associate his work with the development of efficient synthetic methodologies and environmentally oriented chemical processes.[1]

Abstract

Hassan Zali Boeini’s research profile reflects sustained activity in organic chemistry, particularly in synthetic methodology and the preparation of structurally diverse organic compounds. His documented publications include efficient aqueous and solvent-free transformations, heterocyclic synthesis, thioester formation, and functional chemical systems. For example, his work on benzazole synthesis demonstrated an aqueous approach to benzoxazoles, benzothiazoles, and benzimidazoles, while subsequent research investigated efficient thioester preparation in aqueous media.[1][2]

Keywords

Organic chemistry; synthetic organic chemistry; green chemistry; heterocyclic synthesis; thioesters; benzazoles; thiophenes; chemical sensing; porous organic materials; reaction methodology; aqueous synthesis; solvent-free synthesis.

Introduction

Organic chemistry encompasses the study, synthesis, characterization, and transformation of carbon-containing compounds and provides fundamental methods for pharmaceutical, materials, environmental, and analytical applications. Within this field, Hassan Zali Boeini’s published work demonstrates an emphasis on developing practical synthetic routes and investigating reaction systems that can improve efficiency or reduce reliance on conventional reaction conditions.

Research Profile

The supplied bibliometric profile identifies Zali Boeini with 56 documents, 898 citations, and an h-index of 19 in the relevant Scopus record. These figures provide a quantitative overview of indexed scholarly output and citation activity. Independent public research profiles also identify his institutional affiliation with the University of Isfahan and describe expertise spanning organic synthesis, synthetic organic chemistry, green chemistry, materials chemistry, cyclization, and related areas.[7]

Research Contributions

Synthetic methodology. Zali Boeini has contributed to synthetic methods designed to access organic compounds efficiently. His 2009 study of benzazoles reported a one-step aqueous synthesis of benzoxazoles, benzothiazoles, and benzimidazoles, providing an example of applying aqueous reaction conditions to heterocyclic synthesis.[1]

Publications

Selected publications provide representative evidence of the research themes associated with Zali Boeini. The following works are drawn from identifiable publisher and bibliographic records:The publications demonstrate continuity in synthetic organic chemistry while also showing expansion into functional and analytical applications. The individual articles provide traceable DOI records for verification and further reading.[1][3][4][6]

Research Impact

The supplied Scopus metrics of 898 citations and an h-index of 19 indicate that the indexed research output has received substantial scholarly citation activity. Citation metrics, however, vary according to database coverage, publication type, author-name matching, and date of retrieval; therefore, they should be considered alongside the quality, originality, reproducibility, and relevance of individual research contributions.

Award Suitability

Based on the supplied bibliometric indicators and the independently identifiable publication record, Hassan Zali Boeini presents a research profile that is relevant to an Innovative Research Award within the broader field of chemistry. His documented work includes methodological development, aqueous and solvent-free synthetic approaches, heterocyclic chemistry, sulfur-containing transformations, and analytical chemical systems.[1][2][3]

Conclusion

Hassan Zali Boeini’s academic profile reflects sustained research activity in organic chemistry at the University of Isfahan. His published work spans synthetic methodology, heterocyclic chemistry, aqueous and green chemistry, thioester synthesis, chemical sensing, and functional materials. The supplied Scopus indicators of 56 documents, 898 citations, and an h-index of 19 provide quantitative context for the profile, while the documented publications provide qualitative evidence of methodological and application-oriented research contributions.

References

1.Zali Boeini, H. (2009). Efficient One-Step Synthesis of Benzazoles in Aqueous Media. European Journal of Organic Chemistry, 2009(29), 4926–4929.

        https://doi.org/10.1002/ejoc.200900740

2.Zali Boeini, H., & Eshghi Kashan, M. (2009). Highly efficient synthesis of thioesters in water. Green Chemistry, 11, 1987–1991.

        https://doi.org/10.1039/B916852D

3.Zali Boeini, H. (2009). Highly Efficient Synthesis of Thieno[2,3-b]indole Derivatives. Helvetica Chimica Acta, 92(7), 1268–1272.

       https://doi.org/10.1002/hlca.200800423

4.Zali-boeini, H., Khayat, Z., et al. (2022).A Novel Chemosensor for Selective Detection of L-Arginine and L-Cysteine via Macroscopic Sol-Gel               Transition. ChemistrySelect, 7(7),         e202103315.
        https://doi.org/10.1002/slct.2021033155.

5.ResearchGate. Hassan ZALI-BOEINI — University of Isfahan Research Profile.
       https://www.researchgate.net/profile/Hassan-Zali-Boeini

Manish Katiya | Organic Chemistry | Innovative Research Award

Innovative Research Award

Manish Katiya
Yashwantrao Chavan College of Engineering

Manish Katiya
Affiliation Yashwantrao Chavan College of Engineering
Country India
Scopus ID
Documents 10
Citations 28
h-index 3
Subject Area Organic Chemistry
Event International Analytical Chemistry Awards
ORCID 0000-0002-9542-3430
Scopus Author Profile

Manish Katiya is a researcher affiliated with Yashwantrao Chavan College of Engineering, India, with a stated research focus in Organic Chemistry and analytical research. The researcher profile supplied for this recognition page records 10 documents, 28 citations, and an h-index of 3.Contemporary analytical research frequently crosses disciplinary boundaries and incorporates spectroscopy, chromatography, mass spectrometry, electrochemical techniques, and related measurement approaches.[2]

Abstract

This academic recognition profile describes Manish Katiya’s supplied research record in Organic Chemistry and its relationship to analytical chemistry. The profile identifies an affiliation with Yashwantrao Chavan College of Engineering in India and records bibliometric indicators of 10 documents, 28 citations, and an h-index of 3. Such indicators provide quantitative context for scholarly visibility but do not independently measure the quality or originality of individual research outputs. Scopus describes author profiles as resources containing publication, citation, affiliation, subject-area, and identifier information.[1]

Keywords

  • Organic Chemistry
  • Analytical Chemistry
  • Chemical Measurement
  • Molecular Analysis
  • Chromatography
  • Spectroscopy

Introduction

Analytical chemistry is concerned with obtaining reliable information about the composition and properties of chemical systems. Modern practice combines established separation and detection methods with increasingly sensitive instrumental platforms, allowing researchers to characterize complex samples and quantify chemical constituents. The field is closely connected with organic chemistry because the identification and measurement of organic molecules often require complementary separation, structural, and detection strategies.[2] Contemporary analytical workflows may also integrate chromatography, electrophoresis, mass spectrometry, and spectroscopic approaches.

Research Profile

The supplied profile places Manish Katiya within Organic Chemistry and identifies Yashwantrao Chavan College of Engineering as the institutional affiliation. The provided Scopus identifier is 55574195496, while the supplied Scopus profile URL is included in the profile for direct verification. ORCID provides a persistent identifier intended to distinguish researchers and connect their scholarly contributions across systems. The stated ORCID is 0000-0002-9542-3430 and should be consulted directly when validating the identity record.[3]

Research Contributions

The available input does not provide a complete publication-by-publication description of Manish Katiya’s research, so specific experimental findings are not attributed without supporting evidence. Within the stated subject area, relevant analytical research may involve the development, optimization, validation, or application of methods for chemical characterization.

Publications

The supplied record reports 10 indexed documents associated with the researcher profile. A complete publication bibliography should be verified against the researcher’s current Scopus and ORCID records before individual titles, journals, publication dates, or citation relationships are presented as definitive. Scopus author records are designed to group publications using author identifiers and related profile information, helping distinguish researchers with similar names.[1]

Research Impact

The supplied bibliometric record indicates 28 citations and an h-index of 3. These values offer a snapshot of citation-based visibility within the indexed literature and should be interpreted according to database coverage, publication age, field practices, and profile accuracy. Citation counts can change as new publications are indexed and existing records are corrected or consolidated. Accordingly, the figures should be treated as time-sensitive indicators rather than permanent measures of research quality or significance.

Award Suitability

The supplied academic information provides a reasonable profile for consideration in an analytical chemistry recognition context because it identifies Organic Chemistry as the subject area and records an indexed research output and citation history. The International Analytical Chemistry Awards provides the stated event context for this recognition page. Final award eligibility, nomination status, selection criteria, and recognition decisions should be determined by the official award organizers rather than inferred solely from bibliometric indicators.

Conclusion

Manish Katiya’s supplied academic profile presents a researcher associated with Yashwantrao Chavan College of Engineering and Organic Chemistry in India. The reported record includes 10 documents, 28 citations, and an h-index of 3, together with Scopus and ORCID identifiers for profile verification. These details provide a concise basis for describing the researcher’s indexed scholarly presence in the context of analytical chemistry.

References

  1. Elsevier. (n.d.). Scopus author details and author identification resources. Scopus Tutorials.
    https://tutorials.scopus.com/EN/AuthorDetails/sc_AuthorDetails_textOnly.html
  2. ORCID. (n.d.). ORCID: Connecting research and researchers. ORCID.
    https://orcid.org/0000-0002-9542-3430
  3. Rahn, K. L., & Anand, R. K. (2020). Recent Advancements in Bipolar Electrochemical Methods of Analysis. Analytical Chemistry. DOI: https://doi.org/10.1021/acs.analchem.0c04524
  4. Davis, J. A., et al. (2020). Visualization of Streams of Small Organic Molecules in Continuous-Flow Electrophoresis. Analytical Chemistry, 92(4), 2907–2910: https://doi.org/10.1021/acs.analchem.9b05734
  5. Analytical Chemistry Awards. (n.d.). International Analytical Chemistry Awards. Official award website.
    https://analyticalchemistry.org/