Excellence in Research Award
Mohamed Sathak A J College of Engineering, India
| A. Maria Susai Arulanantham | |
|---|---|
| Affiliation | Mohamed Sathak A J College of Engineering |
| Country | India |
| Scopus ID | 57202363383 |
| Documents | 53 |
| Citations | 680 |
| h-index | 17 |
| Subject Area | Material Science |
| Event | Applied Scientist Awards |
| ORCID | 0000-0002-2397-6634 |
A. Maria Susai Arulanantham is a researcher at Mohamed Sathak A J College of Engineering, India, whose scholarly profile is associated with the Excellence in Research Award. His research record identifies Material Science as the principal subject area and reports 53 documents, 680 citations, and an h-index of 17. These bibliometric indicators provide a quantitative view of scholarly activity and citation visibility, while research excellence should also be assessed through the quality, originality, relevance, reproducibility, and practical significance of the underlying work.
Abstract
A. Maria Susai Arulanantham is identified in the supplied scholarly record as a researcher affiliated with Mohamed Sathak A J College of Engineering in India, with a stated research subject area of Material Science. The available bibliometric information records 53 documents, 680 citations, and an h-index of 17. These indicators suggest an established publication and citation record within the indexed research literature. [1] The researcher is also associated with an ORCID identifier, providing a persistent identifier for scholarly identity and research outputs. [2]
Keywords
Material Science; Materials Research; Research Excellence; Scholarly Publications; Bibliometrics; Citation Impact; h-index; Research Contributions; Applied Research; Scientific Recognition.
Introduction
Material Science encompasses the investigation of materials, their composition, structure, properties, processing, and performance, with applications extending across engineering and technology. Research in this broad area frequently connects fundamental understanding of material behavior with the development or optimization of materials for practical applications. The assessment of an individual research profile therefore benefits from considering both bibliometric evidence and the substantive contribution of published work. [3]
Research Profile
The research profile is centered on Material Science, according to the supplied researcher information. The profile contains 53 indexed documents and 680 citations, with an h-index of 17. [1] The combination of publication volume and citation activity indicates that the researcher has contributed to the indexed scholarly literature over multiple research outputs.
The researcher’s ORCID record, identified as 0000-0002-2397-6634, serves as a persistent scholarly identifier and can assist in distinguishing the researcher’s works from those of other researchers with similar names. [2]
Research Contributions
Based on the supplied profile data, the principal documented contribution is a sustained body of scholarly output within Material Science. The 53 reported documents provide evidence of continued publication activity, while 680 citations indicate that the indexed literature has received measurable scholarly attention. [1] A complete assessment of individual scientific contributions would require examination of the titles, abstracts, methodologies, journals, co-authorship patterns, citation contexts, and documented applications associated with the publications.
Publications
The supplied Scopus information reports 53 documents associated with the researcher profile. [4] This document count represents indexed scholarly output available through the stated author profile. Individual publication titles, journal details, publication years, and DOI identifiers were not included in the supplied input and are therefore not reproduced as specific publication claims in this article. [5]
Research Impact
The reported 680 citations and h-index of 17 provide quantitative indicators of the visibility and citation reach of the researcher’s indexed publication record. [1] Citation indicators are useful for contextualizing scholarly influence, but they do not by themselves establish research quality, originality, societal benefit, or practical impact. [2]
Award Suitability
On the basis of the supplied information, A. Maria Susai Arulanantham presents a research profile that is potentially relevant to an Excellence in Research Award, particularly because the profile combines an identified Material Science research focus with 53 indexed documents, 680 citations, and an h-index of 17. [1]
Award suitability should, however, be determined through a broader scholarly assessment rather than bibliometric indicators alone. Relevant evidence may include the originality and significance of research contributions, quality and consistency of publications, interdisciplinary collaboration, practical or technological relevance, research leadership, and documented influence on the scientific community.
Conclusion
A. Maria Susai Arulanantham is presented in the supplied record as a Material Science researcher affiliated with Mohamed Sathak A J College of Engineering in India. The reported 53 documents, 680 citations, and h-index of 17 provide measurable evidence of scholarly publication activity and citation visibility. [1] [2]
External Links
References
- Elsevier. (n.d.). Scopus author details: A. Maria Susai Arulanantham, Author ID 57202363383. Scopus.
https://www.scopus.com/authid/detail.uri?authorId=57202363383 - ScholarGPS. (n.d.). ScholarGPS record: A. Maria Susai Arulanantham, ScholarGPS 20179833052679.
https://scholargps.com/scholars/20179833052679/a-m-s-arulanantham - SR Rosario, AMS Arulanantham, et al. (2026). Nebulizer spray deposited ruthenium doped PbS thin films for photosensing applications.
https://www.sciencedirect.com/science/article/pii/S0254058426004852 - AMS Arulanantham, P Mohanraj, et al. (2025). Tuning deposition parameters for enhanced NH3 gas sensing in iron oxide thin films synthesized by nebulizer spray pyrolysis.
https://www.sciencedirect.com/science/article/pii/S0272884225046462/ - C Rangasami, KV Gunavathy, AMS Arulanantham, et al. (2025). Unveiling the enhanced opto-electronic characteristics of Cu2ZnSnS4 thin films through ruthenium doping.
https://www.sciencedirect.com/science/article/pii/S246802302401873X