Jharana Bajracharya | Nanotechnology Applications | Best Researcher Award

Best Researcher Award

Jharana Bajracharya — Birmingham City University, United Kingdom

Jharana Bajracharya
Affiliation Birmingham City University
Country United Kingdom
Documents 2
Subject Area Nanotechnology Applications
Event The Scientist Global Awards
ORCID 0009-0000-3437-9467

Jharana Bajracharya is affiliated with Birmingham City University in the United Kingdom and is presented for consideration in connection with the Best Researcher Award at The Scientist Global Awards. The recognition profile is associated with the subject area of Nanotechnology Applications and documents a research record comprising two reported documents. The profile provides a structured basis for considering research activity, scholarly contributions, and relevance to applied nanotechnology within an academic recognition framework. [1]

Abstract

This academic recognition profile presents Jharana Bajracharya of Birmingham City University, United Kingdom, in the context of the Best Researcher Award associated with The Scientist Global Awards. The stated research subject area is Nanotechnology Applications, a multidisciplinary field concerned with the development and application of nanoscale materials, structures, devices, and processes. The supplied profile identifies two documents and an ORCID record, providing basic points of reference for scholarly identification. [1]

Keywords

Nanotechnology Applications; nanotechnology; nanomaterials; nanoscience; nanoengineering; applied research; research innovation; advanced materials; nanoscale technology; academic research; Birmingham City University; Best Researcher Award.

Introduction

Nanotechnology Applications constitute an interdisciplinary research domain in which nanoscale phenomena and engineered materials are investigated for practical and scientific applications. Nanotechnology commonly concerns structures and systems with dimensions at approximately the nanoscale, where material properties can differ substantially from those observed at larger scales. Research in this area can therefore combine principles from physics, chemistry, materials science, engineering, biology, and related disciplines. [1]

Research Profile

Jharana Bajracharya’s profile is situated within Nanotechnology Applications at Birmingham City University. The available supplied information identifies two documents and provides an ORCID identifier for researcher disambiguation. ORCID is designed to provide a persistent digital identifier that helps distinguish researchers and connect their scholarly activities with an individual record. [2]

Research Contributions

The supplied record indicates research activity within the Nanotechnology Applications subject area. Without additional publication titles, abstracts, full-text manuscripts, datasets, or verified bibliometric indicators, specific technical findings should not be attributed to the researcher. Instead, the contribution profile can be framed around the documented presence of research outputs and their stated alignment with nanotechnology applications. [4]

Publications

The supplied academic information reports 2 documents associated with the profile. The available information does not include complete publication titles, journal names, publication dates, DOI identifiers, citation counts, or author-order information. Accordingly, individual publication claims are not expanded beyond the documented count. [2]

Research Impact

Research impact in nanotechnology can be evaluated through multiple dimensions rather than publication volume alone. Scholarly impact may include citations, methodological influence, interdisciplinary collaboration, and subsequent research use, while technological impact may involve prototypes, patents, industrial adoption, improved processes, or demonstrable application outcomes. [2]

Award Suitability

The Best Researcher Award provides a recognition context in which a researcher’s academic activity may be considered according to documented scholarly contributions and relevance to the stated research field. Jharana Bajracharya’s affiliation with Birmingham City University and the supplied subject classification of Nanotechnology Applications provide a clear disciplinary context for such consideration. [3]

Conclusion

Jharana Bajracharya of Birmingham City University is presented in this academic profile in relation to the Best Researcher Award and the research subject area of Nanotechnology Applications. The supplied record identifies two documents and an ORCID identifier, establishing a concise basis for researcher and subject-area identification. [1] [2]

References

  1. Elsevier. (2026). Scopus author details: Jharana Bajracharya, author profile. Scopus. The supplied profile information identifies the researcher with two documents and a subject area of Nanotechnology Applications.
    https://www.scopus.com/authid/detail.uri?authorId=60754303300
  2. ORCID. (2026). Jharana Bajracharya — ORCID record. ORCID. Persistent researcher identifier: 0009-0000-3437-9467.
    https://orcid.org/0009-0000-3437-9467
  3. The Scientist Global Awards. (2026). Official award information. The Scientist Global Awards.
    https://thescientists.net/
  4. Evaluation of the anti-cancer potential of zinc oxide nanoparticles synthesized by chemical and green methods using Cucurbita pepo seed extract for photodynamic therapy. https://doi.org/10.1016/j.nxmate.2026.102901/

Sang-Chul Jung | Nanotechnology Applications | Excellence in Research

Prof. Sang-Chul Jung | Nanotechnology Applications | Excellence in Research

Professor | Sunchon National University | South Korea

Prof. Sang-Chul Jung is a leading researcher at Sunchon National University specializing in liquid-phase plasma, catalysis, biomass conversion, and sustainable energy systems. His work has made substantial contributions to biochar production, catalytic hydrodeoxygenation, biomass pyrolysis, green hydrogen generation, photocatalysis, and environmental catalysis. He has authored over 300 peer-reviewed publications, receiving more than 11,730 citations, with an h-index of 54 and an i10-index of 232, reflecting sustained global impact. Prof. Jung has collaborated extensively with international researchers across Asia, Europe, and the Middle East, publishing in top-tier journals such as Science of the Total Environment, Bioresource Technology, and Chemical Engineering Journal. His research supports circular economy strategies, waste valorization, clean fuel production, and air-pollution mitigation, delivering significant societal and industrial benefits.

Citation Metrics (Google Scholar)

11730
9000
6000
3000
0

Citations

11,730

h-index

54

i10-index

232

Citations

h-index

i10-index

View Google Scholar Profile
View Scopus Profile View ORCID Profile

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