Innovative Research Award

Aman Bhardwaj
Regional Institute of Education, India

Aman Bhardwaj
Affiliation Regional Institute of Education
Country India
Scopus ID 57305413500
Documents 1
Citations 55
h-index 1
Subject Area Chemical Sciences
Event Metallurgical Engineering Awards
Google Scholar gtn4mzMAAAAJ&hl

Aman Bhardwaj is a researcher affiliated with the Regional Institute of Education in India whose scholarly profile is associated with the field of Chemical Sciences. Available bibliographic information identifies a Scopus author profile with one indexed document, 55 citations, and an h-index of 1. The Google Scholar profile provides an additional source for examining the researcher’s scholarly record and citation activity. The Innovative Research Award recognizes research work demonstrating originality, scientific relevance, and potential contribution to the advancement of knowledge.[1]

Abstract

The Innovative Research Award profile recognizes Aman Bhardwaj for scholarly activity within the Chemical Sciences. The available research-record information identifies an affiliation with the Regional Institute of Education and a Scopus author identifier of 57305413500. The indexed profile reports one document, 55 citations, and an h-index of 1. These bibliometric indicators provide a quantitative view of the researcher’s indexed scholarly visibility, while assessment of innovative research should also consider originality, methodological rigor, scientific relevance, reproducibility, and the contribution of individual publications to the wider research community.[2][1]

Keywords

Aman Bhardwaj; Innovative Research Award; Chemical Sciences; Regional Institute of Education; scientific research; research innovation; scholarly communication; bibliometrics; Scopus; Google Scholar.

Introduction

Innovation in chemical research encompasses the development of new materials, analytical methods, chemical processes, theoretical approaches, and interdisciplinary applications. Contemporary evaluation of research commonly combines qualitative assessment of scientific contribution with bibliometric information obtained from recognized scholarly databases. Scopus provides author-level bibliographic and citation information that can assist in examining publication and citation patterns, although such indicators should be interpreted within the context of the research field and career stage.

Research Profile

Aman Bhardwaj is affiliated with the Regional Institute of Education, India, and is identified in Scopus by Author ID 57305413500. The available Scopus information records one document and 55 citations, with a reported h-index of 1. The profile is categorized within Chemical Sciences, a broad field encompassing fundamental and applied investigations of chemical substances, reactions, materials, analytical techniques, and related interdisciplinary applications.[5]

Research Contributions

The available bibliographic record establishes scholarly activity associated with Chemical Sciences but does not provide sufficient publication-level information to assign specific research discoveries or technical outcomes without additional source verification. Accordingly, the contribution of Aman Bhardwaj is best considered through the documented research record, the relevance of the indexed work, its scholarly reception, and the scientific context in which the work was undertaken. The citation count reported by the available profile indicates that the indexed publication has received measurable scholarly attention.

Publications

The supplied research information identifies one document in the Scopus author record. Because the publication title, journal, year, volume, pages, and DOI were not supplied in the available input, no specific publication metadata is attributed to Aman Bhardwaj in this section. The Scopus Author Profile and Google Scholar profile can be used to verify publication-level information and identify DOI records where available.[3]

Research Impact

The available Scopus record reports 55 citations for one indexed document and an h-index of 1. These figures indicate that the indexed work has been cited within the scholarly literature. Citation indicators, however, vary substantially among disciplines and publication types and may be influenced by factors such as publication age, field-specific citation practices, collaboration patterns, and database coverage. For this reason, the reported metrics are most appropriately considered alongside direct evaluation of the underlying research.[4]

Award Suitability

The Innovative Research Award is intended to recognize research characterized by originality, intellectual contribution, methodological soundness, and relevance to scientific advancement. Aman Bhardwaj’s documented affiliation with the Regional Institute of Education and research activity within Chemical Sciences provide an academic basis for consideration. The available bibliometric record further documents one Scopus-indexed document, 55 citations, and an h-index of 1.[4]

Conclusion

Aman Bhardwaj’s academic profile represents research activity associated with Chemical Sciences and the Regional Institute of Education in India. The supplied Scopus information records one document, 55 citations, and an h-index of 1, while the researcher’s Google Scholar profile provides an additional avenue for reviewing scholarly activity. The Innovative Research Award profile recognizes this documented research activity while emphasizing that a rigorous assessment of innovation should incorporate both bibliometric evidence and qualitative examination of research originality, scientific validity, and contribution.[5]

References

  1. Elsevier. (n.d.). Scopus author details: Aman Bhardwaj, Author ID 57305413500. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57305413500
  2. M Mukherjee, A Srivastava, AK Singh. (2022). Recent advances in designing thermoelectric materials.
    https://pubs.rsc.org/tc/article-abstract/10/35/12524/793272
  3. J Hong, A Bhardwaj, Y Namgung, H Bae, SJ Song. (2020). Evaluation of the effects of nanocatalyst infiltration on the SOFC performance and electrode reaction kinetics using the transmission line model.
    https://pubs.rsc.org/ta/article-abstract/8/44/23473/710019
  4. L Mathur, IH Kim, A Bhardwaj, B Singh, JY Park, SJ Song. (2020). Structural and electrical properties of novel phosphate based composite electrolyte for low-temperature fuel cells.
    https://www.sciencedirect.com/science/article/pii/S1359836820334545
  5. GM Park, M Asif, A Bhardwaj, et al. (2023). Understanding the Highly Electrocatalytic Active Mixed Triple Conducting NaxCa3–xCo4O9–δ Oxygen Electrode Materials.
    https://advanced.onlinelibrary.wiley.com/doi/abs/10.1002/aenm.202202999
Aman Bhardwaj | Chemical Sciences | Innovative Research Award

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