Longyan Li | Electrical Chemistry | Innovative Research Award

Innovative Research Award

Longyan Li
Nanjing University of Information Science & Technology, China

Longyan Li
Affiliation Nanjing University of Information Science & Technology
Country China
Scopus ID 56094165900
Documents 35
Citations 633
h-index 16
Subject Area Electrical Chemistry
Event Metallurgical Engineering Awards

Longyan Li is a researcher affiliated with Nanjing University of Information Science & Technology in China whose indexed scholarly record includes 35 documents, 633 citations, and an h-index of 16 according to the supplied Scopus profile information. The stated subject area is Electrical Chemistry, a field that encompasses electrochemical phenomena, materials interfaces, charge-transfer processes, and related chemical and engineering applications. The researcher is presented for consideration for the Innovative Research Award, with assessment appropriately centered on the originality, technical contribution, methodological quality, and relevance of the documented research record.

Abstract

Longyan Li is affiliated with Nanjing University of Information Science & Technology and is identified in the supplied academic record with Electrical Chemistry as the principal subject area. The available bibliometric information records 35 documents, 633 citations, and an h-index of 16. These indicators provide a quantitative description of the indexed research output and citation influence associated with the Scopus author record.[1] The Innovative Research Award recognizes research in which originality, scientific or engineering significance, and demonstrable contribution are important considerations. In this context, Li’s research profile may be evaluated through documented publications, methodological approaches, research outcomes, and the extent to which the work contributes to advances in electrochemical or related materials-oriented research.

Keywords

Longyan Li; Innovative Research Award; Electrical Chemistry; Electrochemistry; Electrochemical Materials; Nanjing University of Information Science & Technology; Materials Research; Research Impact; Scientific Innovation; Metallurgical Engineering.

Introduction

Electrochemistry examines chemical and electrical processes at interfaces and provides a scientific foundation for technologies involving energy conversion, energy storage, corrosion control, sensing, catalysis, and materials processing. Electrochemical behavior is strongly influenced by electrode composition, surface structure, electrolyte properties, interfacial kinetics, and transport phenomena.[2] The field therefore has substantial interdisciplinary connections with materials science, chemical engineering, metallurgy, and surface engineering.

Research Profile

The supplied Scopus information identifies Longyan Li under author ID 56094165900 and records 35 documents, 633 citations, and an h-index of 16.[1] The affiliation is Nanjing University of Information Science & Technology, China. The stated subject area, Electrical Chemistry, places the research profile within an interdisciplinary domain where electrochemical principles intersect with chemical, physical, and materials-based investigations.

Research Contributions

Based on the supplied subject classification, Li’s research profile is positioned within Electrical Chemistry and related electrochemical research. Such research can contribute to understanding charge-transfer behavior, electrode–electrolyte interfaces, reaction kinetics, materials performance, and the relationship between structure and electrochemical properties. Electrochemical research is also relevant to materials degradation and corrosion, where electrochemical reactions play a central role in determining material stability and service performance.[4]

Publications

The supplied information confirms 35 indexed documents associated with the Scopus author record.[3] Because individual publication titles, journal information, and DOI identifiers were not supplied, this profile does not assign specific publications to the researcher without independent verification. For academic recognition, publication-level assessment should consider peer-reviewed outputs, methodological rigor, reproducibility, originality, and the relevance of the reported findings.[5]

Research Impact

The supplied bibliometric record reports 633 citations across 35 documents and an h-index of 16.[1] These figures indicate measurable scholarly visibility within the indexed record. Citation counts can reflect the uptake of published research by subsequent scholars, but citation frequency alone should not be interpreted as a complete measure of research quality, innovation, societal benefit, or technological adoption.

Award Suitability

Longyan Li’s supplied research profile is considered for the Innovative Research Award on the basis of an established indexed publication record and a stated specialization in Electrical Chemistry. The reported 35 documents, 633 citations, and h-index of 16 provide supporting bibliometric context.[1] The principal qualitative criterion should be the originality and significance of the underlying research.

Conclusion

Longyan Li is affiliated with Nanjing University of Information Science & Technology and has a supplied Scopus record comprising 35 documents, 633 citations, and an h-index of 16.[1] The stated research area of Electrical Chemistry provides an interdisciplinary foundation relevant to electrochemical science, materials research, and engineering applications. The Innovative Research Award assessment should emphasize verified research originality, technical contribution, publication quality, and demonstrated relevance to the award’s metallurgical and materials-oriented scope.

References

  1. Elsevier. (n.d.). Scopus author details: Longyan Li, Author ID 56094165900. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=56094165900
  2. L Chen, L Li. (2025). Nickel–cobalt–manganese ternary electrodes with CEI film evolution via ORR-regulated pH modulation in zinc-ion batteries.
    https://pubs.rsc.org/tc/article-abstract/13/26/13426/918264
  3. H Ahmad, K Khan, MM Baig, SA Khan, K Li, M Ahmad, J Shah, L Li, G Zhu, Y Zhang. (2026). Advances in 3D printing for zinc-ion battery applications: a review of electrode materials and electrolytes.
    https://pubs.rsc.org/nr/article-abstract/18/21/11178/1227911
  4. Q Lu, Y Chen, L Li. (2026). Amorphous nano-TiO2 as a high-performance cathode material for secondary aqueous zinc-ion batteries.
    https://www.sciencedirect.com/science/article/pii/S0378775326022007
  5. L Chen, T Tu, L Li. (2025). Superior electrochemical performance of aqueous zinc-ion battery achieved by pairing a Nickel-based electrode prepared through one-step electrodeposition with manganese-rich electrolyte.
    https://link.springer.com/article/10.1007/s10800-024-02233-6

Syed Awais Ali | Energy Storage | Research Excellence Award

Research Excellence Award

Syed Awais Ali
Universiti Teknologi PETRONAS, Malaysia

Syed Awais Ali
Affiliation Universiti Teknologi PETRONAS, Malaysia
Country Malaysia
Scopus ID 57954469600
Documents 25
Citations 570
h-index 13
Subject Area Energy Storage
Event Metallurgical Engineering Awards
ORCID 0000-0001-5284-3518

Syed Awais Ali is a researcher affiliated with Universiti Teknologi PETRONAS, Malaysia, whose documented research profile is associated with the field of energy storage. His scholarly record includes 25 Scopus-indexed documents, 570 citations, and an h-index of 13 according to the supplied research-profile information. These indicators provide a quantitative overview of his publication activity and citation visibility and form part of the academic context considered for the Research Excellence Award. [1]

Abstract

Syed Awais Ali is associated with research in energy storage at Universiti Teknologi PETRONAS, Malaysia. His academic profile, as supplied for this recognition article, records 25 documents, 570 citations, and an h-index of 13 in Scopus. [1] The research area of energy storage encompasses materials, electrochemical systems, energy conversion interfaces, and technologies intended to improve the storage and utilization of electrical energy. Within this broad research landscape, scholarly productivity and citation indicators can provide useful quantitative evidence when considered alongside the quality, relevance, originality, and broader significance of research outputs.

Keywords

Energy storage; electrochemical energy storage; energy materials; advanced materials; sustainable energy; battery research; research excellence; Scopus-indexed research; materials science.

Introduction

Energy storage is an interdisciplinary research area connecting materials science, electrochemistry, chemical engineering, mechanical engineering, and energy technology. Research in this field addresses the need for efficient, reliable, durable, and scalable technologies capable of supporting modern energy systems. Academic work may involve the development of electrode and electrolyte materials, characterization of energy-storage mechanisms, improvement of device performance, and investigation of approaches for sustainable energy technologies. [1] [2]

Research Profile

The supplied bibliometric profile identifies Syed Awais Ali with Scopus Author ID 57954469600. The profile contains 25 documents and records 570 citations, with an h-index of 13. [1] These values are presented as a snapshot of the research record and should be interpreted in relation to publication dates, disciplinary citation patterns, co-authorship, and the evolving nature of the research field.

Research Contributions

The research profile is situated within energy storage, an area in which advances in materials and device engineering are closely connected to the performance, safety, lifetime, cost, and sustainability of storage technologies. Research contributions in this domain may address the synthesis and characterization of functional materials, optimization of electrochemical behavior, interfacial phenomena, charge-storage mechanisms, and the development of improved energy-storage architectures. [3]

Publications

The supplied profile reports 25 Scopus-indexed documents. [5] These publications constitute the documented scholarly output associated with the research profile. Because publication titles, journals, publication years, author positions, and DOI metadata were not supplied as part of the input data, individual works are not listed here to avoid attributing unverified bibliographic details. [4]

Research Impact

The supplied citation count of 570 and h-index of 13 indicate measurable citation activity within the indexed research record. [1] Citation metrics can help describe the visibility and reception of scholarly publications, although they do not independently establish research quality. Their interpretation is strengthened when combined with evidence such as peer-reviewed publication quality, methodological rigor, reproducibility, collaboration, technological relevance, and contribution to the advancement of knowledge.

Award Suitability

The Research Excellence Award provides a recognition context for researchers whose scholarly activities demonstrate sustained academic engagement and documented research output. For Syed Awais Ali, the supplied institutional affiliation, specialization in energy storage, Scopus-indexed publication record, citation count, and h-index provide relevant evidence for consideration within an academic recognition framework. [1]

Conclusion

Syed Awais Ali, affiliated with Universiti Teknologi PETRONAS in Malaysia, is presented in this article as a researcher working in the field of energy storage. The supplied Scopus information records 25 documents, 570 citations, and an h-index of 13. [1] Together with the identified research specialization, these indicators provide a concise basis for documenting his academic profile in connection with the Research Excellence Award. A comprehensive scholarly assessment should additionally consider the content, originality, quality, and practical or scientific significance of the underlying research.

References

  1. Elsevier. (n.d.). Scopus author details: Syed Awais Ali, Author ID 57954469600. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57954469600
  2. M Mim, K Habib, SN Farabi, SA Ali, et al. (2024). MXene: a roadmap to sustainable energy management, synthesis routes, stabilization, and economic assessment.
    https://pmc.ncbi.nlm.nih.gov/articles/PMC11292634/
  3. SA Ali, IA Bangash, H Sajjad, et al. (2025). Review on the role of electrofuels in decarbonizing hard-to-abate transportation sectors: advances, challenges, and future directions.
    https://pubs.acs.org/doi/abs/10.1021/acs.energyfuels.4c06185
  4. SA Ali, K Habib, M Younas, et al. (2024). Advancements in thermal energy storage: a review of material innovations and strategic approaches for phase change materials.
    https://pubs.acs.org/enfuem/article-abstract/38/20/19336/166236
  5. ASM Mannafi, K Habib, SA Ali, et al. (2025). MXene-based materials for electromagnetic interference shielding: Fundamentals, mechanisms, and emerging applications.
    https://www.sciencedirect.com/science/article/pii/S259012302503083X

Hamid El Qarnia | Heat Transfer Energy | Best Researcher Award

Best Researcher Award

Hamid El Qarnia
Cadi Ayyad University, Morocco
Hamid El Qarnia
Affiliation Cadi Ayyad University
Country Morocco
Scopus ID 6507446902
Documents 45
Citations 1,383
h-index 15
Subject Area Heat Transfer-Energy
Event Metallurgical Engineering Awards
ORCID 0000-0002-3134-9825

Hamid El Qarnia is a Moroccan academic researcher and professor affiliated with Cadi Ayyad University. His scholarly activities focus on heat transfer, thermal energy storage systems, phase change materials, solar energy systems, computational fluid dynamics, thermodynamics, and advanced cooling technologies. Through decades of teaching, supervision, research publication, and international collaboration, he has contributed to the advancement of thermal sciences and energy engineering applications. His publication record, citation impact, editorial service, and conference leadership demonstrate sustained engagement with the international scientific community.[1][2]

Abstract

The Best Researcher Award recognizes sustained scholarly achievement, scientific productivity, and measurable research impact. Hamid El Qarnia has established a research profile centered on thermal engineering, heat transfer, phase change materials, latent heat storage technologies, and energy conversion systems. His academic career includes extensive teaching, graduate supervision, scientific publishing, conference leadership, editorial activities, and international collaboration. His research has contributed to improved understanding of thermal storage systems, melting and solidification processes, and advanced cooling technologies relevant to energy and engineering applications.[1][3]

Keywords

Heat Transfer; Thermal Energy Storage; Phase Change Materials; Computational Fluid Dynamics; Energy Conversion; Solar Energy Systems; Melting and Solidification; Thermal Management; Heat Exchangers; Metallurgical Engineering Applications.

Introduction

Research in thermal sciences plays an important role in advancing energy efficiency, industrial processes, and sustainable engineering solutions. Hamid El Qarnia has developed a long-standing academic career dedicated to investigating thermal phenomena in engineering systems, with particular emphasis on heat transfer mechanisms and energy storage technologies. His work combines analytical, numerical, and computational approaches to address practical challenges associated with energy utilization and thermal management.[1][2]

Research Profile

Hamid El Qarniapr earned a doctorate in Energetics from Cadi Ayyad University and later completed a Ph.D. in Mechanical Engineering at the University of Sherbrooke, Canada. His academic career spans more than three decades of teaching and research. Throughout this period, he has served in various academic roles, including assistant professor, associate professor, full professor, research assistant, and visiting academic collaborator. His professional activities extend beyond teaching to include research supervision, editorial responsibilities, conference organization, and scientific peer review.[2]

Research Contributions

Hamid El Qarnia’s research addresses the thermal behavior of phase change materials and latent heat storage systems. His investigations explore melting and solidification mechanisms, thermal performance optimization, and energy storage efficiency. These studies contribute to the development of advanced thermal management systems applicable to renewable energy technologies, industrial heat recovery, and cooling systems.[3][4]

Publications

Selected recent publications demonstrate continuing research activity in thermal engineering and energy storage technologies:

  1. Sustainable Thermal Insulation Composites Based on Alfa Plant Fibers and Wood Waste (2025).
  2. 3D Two Phases Reduced Model of a Rock Bed Thermocline Thermal Energy Storage Unit (2025).
  3. Acoustic, Mechanical and Thermal Characterization of Bio-Based Wood Composites Reinforced with Beech and Oak Fibers (2025).

Research Impact

The available bibliometric indicators demonstrate a measurable scholarly impact. With more than one thousand citations and an established h-index, Hamid El Qarnia’s work has received recognition within the thermal sciences and energy engineering communities. His contributions have supported academic discourse in energy storage, heat transfer enhancement, and sustainable engineering technologies. Beyond publication activity, his service as reviewer, editor, conference organizer, and scientific committee member reflects continued engagement in research leadership and knowledge dissemination.[1][2]

Award Suitability

The Best Researcher Award recognizes individuals who demonstrate sustained research productivity, scientific influence, scholarly leadership, and meaningful contributions to their academic discipline. Hamid El Qarnia’s career aligns with these criteria through extensive publication activity, international collaborations, graduate mentorship, editorial service, conference leadership, and impactful research addressing contemporary challenges in thermal energy systems. His multidisciplinary contributions to heat transfer and energy storage technologies support the objectives of scientific advancement and engineering innovation within the broader metallurgical and energy engineering domains.[2][5]

Conclusion

Hamid El Qarnia has developed a distinguished academic profile characterized by long-term engagement in research, teaching, supervision, and scientific service. His work in heat transfer, thermal energy storage, and phase change materials has contributed to the advancement of thermal engineering knowledge and practical energy applications. Considering his publication record, citation impact, professional leadership, and sustained research activity, he represents a strong candidate for recognition through the Best Researcher Award.[1][2]

References

  1. Elsevier. (n.d.). Scopus author details: Hamid El Qarnia, Author ID 6507446902. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=6507446902
  2. H El Qarnia, El Qarnia., & EK Lakhal. (2011). Thermal performance of a greenhouse with a phase change material north wall.
    https://www.uca.ma/fssm/fr
  3. Rbiyah, O., El Qarnia, H., Fedele, L., Bobbo, S., & Rossi, S. (2025). Investigation of Melting Process in a Double Tube Energy Storage Unit.
    https://doi.org/10.1109/SmartAgriSuSY68475.2025.11467033
  4. Ennaya, O., El Qarnia, H., & Arıcı, M. (2026). Analytical Solution for the Solidification of a Liquid in Couette Flow.
    https://doi.org/10.1002/est2.70386
  5. Mustapha Faraji, Hamid El Qarnia. (2009). Passive cooling of protruding electronic components by latent heat of fusion storage.
    https://asmedigitalcollection.asme.org/electronicpackaging/article-abstract/131/2/021011/466128

Mahboobeh Shahbazi | Electrochemistry | Women Researcher Award

Dr. Mahboobeh Shahbazi | Electrochemistry | Women Researcher Award

Research Fellow at Queensland University of Technology | Australia

Dr. Mahboobeh Shahbazi is a highly accomplished researcher in materials engineering and condensed matter physics, making her a strong candidate for the Women Researcher Award. Her work focuses on advanced energy materials, including superconductors, magnetocaloric systems, hydrogen liquefaction technologies, and next-generation energy storage and conversion devices. She has demonstrated significant research impact with 43 Scopus-indexed publications, 1,194 citations across 1,072 documents, and an h-index of 19, reflecting both productivity and influence in her field. Her contributions bridge fundamental science and real-world applications, particularly in renewable energy and low-emission technologies. She has played a key role in advancing innovative materials for sustainable energy systems while fostering international collaborations and interdisciplinary research. Her strong citation record, consistent publication output, and leadership in high-impact projects highlight her excellence, originality, and meaningful contribution to scientific advancement, aligning well with the objectives of the Women Researcher Award.

Citation Metrics (Scopus)

1500

1000

500

50

0

Citations
1,194

Documents
43

h-index
19

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