Innovative Research Award

Haseebul Hassan
Affiliation Shenzhen University
Country China
Scopus ID 57929378400
Documents 104
Citations 2,124
h-index 29
Subject Area Electrocatalytic
Event International Research Chemistry Awards

Haseebul Hassan is a researcher associated with Shenzhen University, China, whose scholarly work encompasses electrocatalysis, electrochemical energy storage, hydrogen evolution, and functional materials. Publicly available author information identifies his research activities with energy storage devices and electrocatalysis, while recent publications demonstrate work involving advanced electrode materials, catalytic interfaces, supercapacitors, and hydrogen-related electrochemical technologies.[1]

Abstract

Haseebul Hassan’s research profile is associated with electrocatalytic materials, electrochemical energy storage, hydrogen evolution reactions, and related functional-material systems. His recent scholarly activities include research on composite electrodes, metal-organic frameworks, MXene-based materials, sulfides, phosphates, and catalytic interfaces designed for electrochemical energy conversion and storage.[1]

Keywords

Haseebul Hassan; electrocatalysis; electrochemical energy storage; hydrogen evolution reaction; oxygen evolution reaction; water electrolysis; nitrate reduction; supercapacitors; supercapattery; lithium metal batteries; MXene composites; metal-organic frameworks; nanocomposite materials; catalytic interfaces; advanced electrode materials; functional materials; energy conversion; sustainable energy technologies; materials chemistry; Innovative Research Award.[2]

Introduction

Research in these fields commonly seeks materials and interfaces capable of facilitating efficient charge transfer, improving catalytic activity, and maintaining electrochemical stability. Hassan’s documented research activities fall within this broader scientific context, with publications addressing advanced electrode materials and catalytic systems for energy-related applications.[1]

Research Profile

Haseebul Hassan’s research profile centers on the development and evaluation of materials for electrochemical energy storage and catalytic energy conversion. ScienceDirect’s author information associates him with Shenzhen University and reports research topics including zinc sulfide, nitrogen-doped graphene, metal-organic frameworks, MXenes, nanotube-based materials, and related functional materials.[3]

Research Contributions

The documented literature associated with Hassan demonstrates research into the relationship between material composition, structure, electrochemical behavior, and device performance. His publications include studies of multifunctional composites intended to combine energy-storage properties with electrocatalytic activity, illustrating an approach in which a single materials platform may be ivestigated for more than one electrochemical function.[2]

Publications

Selected publications by Haseebul Hassan reflect a broad research focus on materials chemistry, electrocatalysis, electrochemical energy storage, and sustainable energy technologies, covering areas such as perovskite composites, nitrate reduction, water electrolysis, MXene-based materials, metal-organic frameworks, advanced electrode materials, supercapacitors, supercapattery devices, and hydrogen evolution systems.[4] 

Research Impact

The supplied academic profile records documents, citations, and an h-index of . These indicators are bibliometric measures that provide quantitative information about scholarly output and citation activity. Bibliometric values can change over time as databases are updated and new publications and citations are indexed.Beyond numerical indicators, the subject coverage of Hassan’s publications connects materials synthesis and characterization with electrochemical applications.[2]

Award Suitability

The Innovative Research Award profile for Haseebul Hassan is associated with his documented research activity in electrocatalysis, electrochemical energy storage, functional materials, and energy conversion. His publication themes include the development and investigation of composite materials and catalytic interfaces for electrochemical applications, while his scholarly record includes research addressing hydrogen evolution, oxygen evolution, supercapacitors, and related energy technologies.[3]

Conclusion

Haseebul Hassan’s academic profile reflects sustained research activity in electrocatalysis, electrochemical energy storage, functional materials, and energy-conversion technologies. His documented publications cover areas including MXene composites, metal-organic frameworks, hybrid electrode materials, catalytic reactions, and water-electrolysis technologies.[4] 

References

  1. Elsevier. (n.d.). Scopus author details: Haseebul Hassan, Author ID 57929378400. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57929378400
  2. Hassan, H., Mohammad, A., Ali, S. K., Albishri, A., Madkhali, O., Hussain, S., Alawaideh, Y. M., Alayed, T., Ghannam, H., & Rahman, M. M. (2026). Vanadium carbide-supported molybdenum disulfide nanocomposites for advanced asymmetric supercapacitor electrodes.
    https://doi.org/10.1016/j.jpcs.2026.113971
  3. International Research Chemistry Awards. (n.d.).
    https://researchchemistry.org
  4. Mohammad, A., Aljabri, M. D., Hassan, H., Madkhali, O., Ali, S. K., Khan, K., & Rahman, M. M. (2026). Quasi-solid-state lithium metal batteries achieve stable operation through self-healing sulfamide electrolytes that utilize hydrogen bonding. Journal of Power Sources, 690, 240824.
    https://doi.org/10.1016/j.jpowsour.2026.240824
Haseebul Hassan | Electrocatalytic | Innovative Research Award

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