Best Paper Award
| Ibrahim Khan | |
| Affiliation | University of Nottingham Ningbo China |
| Country | China |
| Documents | 137 |
| Citations | 18,867 |
| h-index | 50 |
| Subject Area | Energy; Biomimicry |
| Event | Global Particle Physics Excellence Awards |
Ibrahim Khan is a researcher affiliated with the University of Nottingham Ningbo China whose research activities include advanced energy materials, renewable-energy technologies, electrochemical processes, hydrogen-related systems, photocatalysis, and energy storage. Publicly available research records associate his work with materials synthesis and photoelectrochemical approaches to energy and environmental applications. [1] His research profile also includes contributions to contemporary materials and catalytic systems investigated for applications such as water splitting, photovoltaic technologies, and related energy-conversion processes. [2]
Abstract
Ibrahim Khan is affiliated with the University of Nottingham Ningbo China and works in research areas connected with advanced materials, energy conversion, renewable energy, photocatalysis, hydrogen technologies, and energy storage. Available scholarly records identify research involving nanomaterials, electrochemical processes, photovoltaic systems, and catalytic materials. [1] Recent publications involving Khan examine emerging material architectures and their potential roles in photovoltaic and photocatalytic applications, illustrating the multidisciplinary nature of contemporary energy-materials research. [2]
Keywords
- Energy Materials
- Renewable Energy
- Hydrogen Fuel
- Energy Storage
- Photocatalysis
- Photoelectrochemistry
- Nanomaterials
- Biomimicry
Introduction
Research into sustainable energy materials combines chemistry, materials science, electrochemistry, physics, and engineering to address challenges in energy conversion and storage. Within this broad area, advanced functional materials are investigated for applications including hydrogen production, water splitting, carbon conversion, photovoltaic systems, and electrochemical storage. Khan’s publicly documented research is situated within this multidisciplinary context, with particular emphasis on the development and investigation of materials for energy and environmental applications. [3]
Research Profile
Khan’s research profile is associated with advanced materials for energy and environmental applications. Public research descriptions identify areas including material synthesis, photoelectrochemistry, hydrogen fuel, photoreforming, and energy storage. [2] His work also extends to catalytic and nanostructured systems relevant to water splitting, pollutant treatment, carbon-related conversion processes, and electrochemical energy technologies.
Research Contributions
A 2026 publication on a multifunctional van der Waals heterostructure, for example, lists Khan among the authors and describes his roles in validation, supervision, conceptualization, resources, and funding acquisition. [2] This provides a specific example of research participation within a multidisciplinary materials-science project.
Publications
Khan’s publication record includes research articles and review-oriented contributions addressing energy materials, nanomaterials, photocatalysis, sensing, hydrogen-related technologies, and electrochemical systems. Public bibliographic records currently identify him with the University of Nottingham Ningbo China and provide a Scopus author identifier of 57192646252. [1]
Research Impact
The supplied research metrics for this recognition profile report 137 documents, 18,867 citations, and an h-index of 50. These figures are presented as the submitted profile metrics and should be interpreted according to the database, author identity, and date on which the underlying records were collected. Publicly accessible ScienceDirect author information independently identifies Ibrahim Khan with Scopus ID 57192646252, while displaying a different current set of document and citation counts, illustrating that bibliometric indicators can vary between databases and collection dates. [1]
Award Suitability
For a Best Paper Award assessment, relevant considerations may include the scientific originality of the submitted paper, methodological quality, clarity of research objectives, reproducibility, significance of the findings, quality of publication venue, and relevance to the scope of the award. Khan’s documented research in advanced energy materials provides a substantial scholarly context for evaluating publications involving materials science, energy conversion, photocatalysis, and related interdisciplinary topics. [2]
Conclusion
Ibrahim Khan’s documented research profile is associated with advanced energy materials, renewable-energy technologies, hydrogen research, photocatalysis, photoelectrochemistry, and energy storage. His publication record includes multidisciplinary studies of nanostructured materials, catalytic systems, photovoltaic architectures, and environmental applications. [2] The supplied bibliometric profile reports 137 documents, 18,867 citations, and an h-index of 50, while publicly accessible bibliographic sources provide independently maintained metrics that may differ by database and collection date. [1]
External Links
References
- Google scholar Profile Link, Ibrahim Khan
https://scholar.google.com/citations?user=3ZxOgLgAAAAJ&hl=en - DNAzyme biosensor as an emerging food safety indicator: History and fundamental mechanism to future prospects. TrAC Trends in Analytical Chemistry, 194, 118516.
https://doi.org/10.1016/j.trac.2025.118516 - Recent advances in amino acid involved metal-organic frameworks from preparation to applications. Coordination Chemistry Reviews, 567, 218311. ScienceDirect
https://doi.org/10.1016/j.ccr.2026.218311