Sayyed Javad Asadpoor | Energy Sustainability | Best Researcher Award

Global Scientist Day Awards

Sayyed Javad Asadpoor is a researcher affiliated with Mashhad Branch-Islamic Azad University, Iran, whose indexed research profile is associated with the subject area of Energy Sustainability. His scholarly record includes seven documents, 25 citations, and an h-index of 3 according to the supplied Scopus author information. This article presents a neutral academic recognition profile in the context of the Global Scientist Day Awards.

Sayyed Javad Asadpoor
Affiliation Mashhad Branch-Islamic Azad University
Country Iran
Scopus ID 57196087982
Documents 7
Citations 25
h-index 3
Subject Area Energy Sustainability
Event Global Scientist Day Awards
ORCID 0000-0002-0977-8674

The profile is intended to provide an organized overview of the researcher’s documented scholarly indicators, research orientation, publication activity, and relevance to an academic recognition framework. Bibliographic indicators should be interpreted within the scope and coverage of the indexing databases from which they are obtained. [1]

Abstract

Sayyed Javad Asadpoor is an Iran-based researcher affiliated with Mashhad Branch-Islamic Azad University and associated with Energy Sustainability. The supplied scholarly profile records seven documents, 25 citations, and an h-index of 3 in Scopus. His research profile is considered within the broader academic context of sustainable energy research, where interdisciplinary investigation supports efficient resource use and long-term environmental objectives.[1]

Keywords

Energy Sustainability; Sustainable Energy Research; Academic Research; Scholarly Publications; Research Impact; Scopus; ORCID; Mashhad Branch-Islamic Azad University; Iran; Global Scientist Day Awards.

Introduction

Energy sustainability is a multidisciplinary research area concerned with the development, management, and responsible utilization of energy resources while considering environmental, economic, and societal dimensions. Academic research in this field frequently intersects with engineering, environmental science, energy systems, and resource management.[2]

Research Profile

Sayyed Javad Asadpoor is affiliated with Mashhad Branch-Islamic Azad University in Iran. The supplied Scopus information identifies the researcher with Author ID 57196087982 and records seven documents, 25 citations, and an h-index of 3. These indicators provide quantitative evidence of indexed scholarly activity, although citation metrics can vary according to database coverage, publication type, citation age, and field-specific practices. [1][3]

Research Contributions

The documented contribution profile is centered on Energy Sustainability, a research domain requiring consideration of energy efficiency, sustainable resource utilization, environmental responsibility, and technological development. Based on the supplied information, Asadpoor’s contribution is best described through the established research area and indexed publication record rather than through unsupported claims about individual discoveries or specific technological outcomes. [2][1]

Publications

The supplied Scopus profile records seven documents for Sayyed Javad Asadpoor. These indexed documents constitute the publication base from which the reported citation count and h-index are derived. Individual publication titles, journal information, publication years, and DOI identifiers have not been supplied in the source data for this article; therefore, no specific publication or DOI is attributed here without verification. [1][3]

Research Impact

The supplied profile reports 25 citations and an h-index of 3. Citation counts represent the number of indexed citations associated with the documented publication record, while the h-index reflects a combined measure of publication output and citation distribution. Such indicators can provide useful quantitative context but should be considered alongside publication quality, research relevance, collaboration, methodological contribution, and disciplinary context. [1][2]

Award Suitability

The Global Scientist Day Awards provide an academic recognition framework through which researchers may be considered in relation to their documented scholarly activities and research areas. Sayyed Javad Asadpoor’s affiliation with Mashhad Branch-Islamic Azad University, research orientation in Energy Sustainability, indexed publication record, citation count, and h-index form relevant evidence for consideration within such an academic recognition process. [4]

Conclusion

Sayyed Javad Asadpoor is an Iran-based researcher affiliated with Mashhad Branch-Islamic Azad University and associated with Energy Sustainability. The supplied Scopus indicators document seven publications, 25 citations, and an h-index of 3, providing a concise quantitative representation of indexed scholarly activity. [1] [3]

References

  1. Elsevier (2026.). Scopus author details: Sayyed Javad Asadpoor, Author ID 57196087982. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57196087982
  2. Assessment of impacting architectural aspects on UHI and energy in apartment housing of Mashhad, Iran.
    https://www.sciencedirect.com/org/science/article/abs/pii/S0969998826001050
  3. ORCID (2026.). ORCID record: Sayyed Javad Asadpoor, ORCID iD 0000-0002-0977-8674. ORCID.
    https://orcid.org/0000-0002-0977-8674
  4. Global Scientist Day Awards (2026.). Global Scientist Day Awards. Official Award Website.
    https://scientistday.org/

Wirginia Schmidt | Clean Energy | Innovative Research Award

Global Scientist Day Awards

Wirginia Schmidt
Researcher Wirginia Schmidt
Affiliation Silesian University of Technology
Country Poland
Documents 1
Subject Area Clean Energy
Event Global Scientist Day Awards
ORCID 0009-0002-0353-1344

Wirginia Schmidt is affiliated with the Silesian University of Technology, Poland, and has contributed to research within the field of Clean Energy. Academic recognition initiatives such as the Global Scientist Day Awards acknowledge researchers whose scholarly work supports innovation, sustainable technological advancement, and scientific collaboration. The research profile summarized below presents an objective overview of institutional affiliation, research interests, scholarly output, and the broader significance of ongoing contributions within the clean energy domain.[1]

Abstract

Clean energy research continues to shape scientific progress by improving sustainable technologies, reducing environmental impacts, and enhancing energy efficiency across industrial and societal applications.Recognition through the Global Scientist Day Awards highlights the importance of scientific excellence, responsible research practices, interdisciplinary collaboration, and contributions that support future innovation within sustainable energy systems.[1]

Keywords

Clean Energy, Sustainable Engineering, Energy Technologies, Scientific Research, Environmental Sustainability, Academic Recognition, Poland, Silesian University of Technology, Global Scientist Day Awards, Renewable Energy.

Introduction

Scientific research in clean energy integrates engineering principles, environmental responsibility, and technological innovation to support sustainable development. Universities and research institutions contribute significantly to this objective by advancing knowledge through experimentation, publication, and interdisciplinary cooperation.[2]

Research Profile

Wirginia Schmidt is associated with the Silesian University of Technology, one of Poland’s established institutions for engineering and applied scientific research. Available scholarly records indicate research activity within the Clean Energy subject area and indexed scientific publication. The research profile demonstrates commitment to academic quality, institutional collaboration, and dissemination of scientific findings through recognized scholarly communication channels.[1]

Research Contributions

Research contributions within clean energy commonly involve advancing sustainable technologies, improving resource efficiency, and supporting environmentally responsible engineering practices. Scholarly investigations in this discipline frequently contribute to scientific understanding of renewable energy systems, industrial optimization, emissions reduction, and sustainable infrastructure development. Such research strengthens international scientific collaboration while supporting long-term technological progress.[2]

Research Impact

The broader impact of clean energy research extends beyond academic publication by supporting evidence-based engineering practices, sustainable industrial development, and environmental stewardship. Contributions from researchers strengthen collaborative scientific networks, encourage innovation, and provide knowledge that may assist policymakers, engineers, and future investigators working toward sustainable energy solutions.[2]

Award Suitability

Based on the available academic information, Wirginia Schmidt demonstrates characteristics consistent with recognition through scholarly award programs emphasizing research quality, scientific integrity, institutional contribution, and participation in advancing clean energy research. Evaluation within the Global Scientist.[1]

Conclusion

Wirginia Schmidt’s academic profile reflects participation in clean energy research through institutional affiliation, scholarly publication, and engagement with internationally recognized research identification systems.[2]

References

  1. ORCID (2026). ORCID record: Wirginia Schmidt.
    https://orcid.org/0009-0002-0353-1344
  2. Global Scientist Day Awards (2026). International scientific recognition and award programme.
    https://scientistday.org/
  3. Green Cities and Innovative Urban Solutions: A Study of Greening Urban Spaces in Selected European Cities.
    https://www.mdpi.com/2071-1050/18/15/7795

Md Shible Noman | Energy Sustainability | Best Researcher Award

Global Scientist Day Awards

Md Shible Noman
Affiliation Pabna University of Science and Technology
Country Bangladesh
Google Scholar ID 3oyZHncAAAAJ
Documents 6
Citations 19
h-index 3
Subject Area Energy Sustainability
Event Global Scientist Day Awards

Md Shible Noman

Pabna University of Science and Technology, Bangladesh

Md Shible Noman is a researcher associated with the Pabna University of Science and Technology, Bangladesh, whose academic interests focus on energy sustainability and related interdisciplinary research areas. His scholarly work contributes to understanding sustainable energy systems, environmental efficiency, and innovative technological solutions that support global sustainable development objectives. Through peer-reviewed publications and measurable citation impact, his research reflects continued engagement with emerging scientific challenges while emphasizing evidence-based methodologies and practical applications.[1]

Abstract

This article presents an academic overview of Md Shible Noman, highlighting his research activities, scholarly productivity, and contributions within the field of energy sustainability.The information is intended to provide an objective assessment suitable for academic recognition and professional reference while maintaining a neutral encyclopedic style.[1]

Keywords

Energy Sustainability, Renewable Energy, Sustainable Development, Environmental Engineering, Green Technology, Research Impact, Academic Recognition, Bangladesh Research, Scientific Publications, Global Scientist Day Awards.

Introduction

Energy sustainability has become one of the defining scientific priorities of the twenty-first century due to increasing environmental challenges and the need for efficient energy systems. Researchers working within this field contribute toward developing technologies and analytical frameworks that improve energy efficiency while reducing environmental impacts.[2]

Research Profile

Based at the Pabna University of Science and Technology, Md Shible Noman has established a developing academic profile supported by peer-reviewed publications indexed through Google Scholar. His current scholarly metrics include six publications, nineteen citations, and an h-index of three. These indicators demonstrate growing academic visibility and continued engagement in scientific research.[1]

Research Contributions

The research contributions of Md Shible Noman focus on advancing knowledge related to sustainable energy systems and environmentally responsible technological development. His work contributes to scientific discussions concerning renewable energy utilization, resource optimization, and sustainability-oriented engineering practices.[2]

Publications

The available publication record demonstrates scholarly engagement through peer-reviewed academic articles indexed within Google Scholar. These publications collectively contribute to the understanding of sustainable energy systems and environmental research while supporting future interdisciplinary investigations.[1]

Research Impact

Academic impact may be evaluated using publication output, citation performance, and research visibility. With an established Google Scholar profile, measurable citation activity, and an h-index reflecting scholarly influence, Md Shible Noman demonstrates continued participation in the international research community. Continued publication and collaboration are expected to strengthen future scientific impact.[1]

Award Suitability

Based on publicly available academic information, Md Shible Noman demonstrates characteristics associated with scholarly excellence, including active research engagement, peer-reviewed publications, measurable citation performance, and contributions within the field of energy sustainability.[1]

Conclusion

Md Shible Noman represents an emerging researcher contributing to the advancement of energy sustainability through scholarly investigation and scientific publication. His developing research profile, supported by peer-reviewed work and measurable academic metrics, reflects continued dedication to evidence-based research and knowledge dissemination.[1]

References

  1. Google Scholar (2026). Md Shible Noman — Google Scholar Author Profile.
    https://scholar.google.com/citations?hl=en&user=3oyZHncAAAAJ
  2. Technoeconomic Assessment of a Hydrogen-Integrated Hybrid Microgrid for Island Electrification in Developing Countries.
    https://doi.org/10.1155/ijph/5549395
  3. Global Scientist Day Awards (2026). Official Award Website.
    https://scientistday

Palesa Milliscent Lefatsa | Energy Sustainability | Research Excellence Award

Global Scientist Day Awards

Palesa Milliscent Lefatsa
Researcher Palesa Milliscent Lefatsa
Affiliation University of KwaZulu-Natal
Country South Africa
Scopus ID 57314438300
Documents 7
Citations 26
h-index 2
Subject Area Energy Sustainability
Event Global Scientist Day Awards

Palesa Milliscent Lefatsa is affiliated with the University of KwaZulu-Natal, South Africa, where her scholarly activities contribute to research in the field of Energy Sustainability. Her academic record indexed in Scopus reflects contributions to sustainable energy research through peer-reviewed publications and collaborative investigations. Her research profile demonstrates engagement with contemporary scientific challenges involving sustainable technologies, environmental stewardship, and interdisciplinary energy solutions.[1]

Abstract

This article presents an academic overview of Palesa Milliscent Lefatsa and her scholarly contributions in Energy Sustainability. The profile summarizes institutional affiliation, research interests, publication record, citation performance, and broader scientific relevance while recognizing her participation in the Global Scientist Day Awards. The discussion adopts a neutral academic perspective consistent with encyclopedic documentation of researcher achievements.[1]

Keywords

Energy Sustainability, Sustainable Energy Systems, Renewable Energy, Environmental Research, University of KwaZulu-Natal, South Africa, Scientific Publications, Scopus Author Profile, Global Scientist Day Awards.

Introduction

Energy sustainability has become a central area of scientific inquiry due to increasing global emphasis on environmental protection, climate resilience, and efficient resource utilization. Researchers working within this field contribute to the development of cleaner technologies and sustainable practices that support long-term economic and environmental objectives. Through scholarly publications and collaborative research, Palesa Milliscent Lefatsa contributes to this evolving discipline by participating in investigations that advance scientific understanding within the energy sector.[1]

Research Profile

The research profile of Palesa Milliscent Lefatsa reflects academic engagement in energy sustainability with publications indexed in Scopus. Her scholarly activities emphasize scientific investigation, interdisciplinary collaboration, and dissemination of research findings through peer-reviewed literature. Citation metrics and publication output indicate continuing participation in internationally indexed scientific research while supporting sustainable development objectives.[1]

Publications

The Scopus database records seven indexed publications associated with the researcher. These publications contribute to scholarly communication in the field of energy sustainability and demonstrate ongoing participation in scientific research. Individual publications are available through the Scopus author profile and associated publisher platforms.[1][2]

Research Impact

According to the available Scopus metrics, the researcher has accumulated twenty-six citations with an h-index of two. These indicators provide measurable evidence of scholarly visibility and demonstrate that published research has been referenced within the wider scientific literature. Citation metrics should be interpreted alongside qualitative research contributions and collaborative achievements.[1]

Award Suitability

Based on publicly available academic indicators, institutional affiliation, publication record, and contributions to Energy Sustainability, Palesa Milliscent Lefatsa demonstrates qualifications consistent with recognition by scholarly award initiatives such as the Global Scientist Day Awards. Consideration for recognition reflects sustained research activity, academic dissemination, and continued engagement with scientific advancement rather than any comparative ranking among researchers.[1][3]

Conclusion

Palesa Milliscent Lefatsa represents an active researcher contributing to the field of Energy Sustainability through scholarly publications, scientific collaboration, and academic engagement. Her research profile, publication metrics, and institutional affiliation illustrate continuing participation in internationally recognized scientific research. The Global Scientist Day Awards provide an appropriate platform for acknowledging researchers dedicated to advancing scientific knowledge and sustainable development.[1]

  1. Scopus Author Profile
  2. Representative DOI Reference
  3. Global Scientist Day Awards

References

  1. Elsevier (2026). Scopus author details: Palesa Milliscent Lefatsa, Author ID 57314438300. Scopus.
    https://www.scopus.com/pages/authors/57314438300
  2. Nonlinear Effects of Renewable and Non-Renewable Energy Consumption on Ecological Sustainability in South Africa.
    https://www.mdpi.com/1996-1073/19/12/2850
  3. Global Scientist Day Awards (2026). Official Award Website.
    https://scientistday.org/

Xiaohao Liu | Sodium-ion Batteries | Best Researcher Award

Best Researcher Award

Xiaohao Liu
Affiliation Wenzhou University
Country China
Scopus ID 57201097212
Documents 35
Citations 3,455
h-index 32
Subject Area Sodium-ion Batteries
Event Global Scientist Day Awards
ORCID 0000-0001-5016-4028

Xiaohao Liu

Wenzhou University, China

Xiaohao Liu of Wenzhou University, whose work in sodium-ion battery technologies has contributed to advances in energy storage science and electrochemical materials research. The recognition reflects scholarly productivity, citation impact, and sustained contributions to contemporary scientific knowledge.[1]

Abstract

Xiaohao Liu is recognized for research contributions in sodium-ion battery science, an emerging field addressing sustainable and cost-effective energy storage technologies. Through publications, collaborative research activities, and scholarly dissemination, Liu has contributed to the understanding of electrode materials, electrochemical mechanisms, and battery performance optimization. Citation metrics and publication output indicate a notable level of academic influence within the energy materials research community.[1][2]

Keywords

  • Sodium-ion Batteries
  • Energy Storage Systems
  • Electrochemical Materials
  • Battery Technology
  • Materials Science
  • Research Excellence

Introduction

The transition toward renewable energy infrastructure has increased the demand for efficient, affordable, and sustainable battery technologies. Sodium-ion batteries have emerged as a promising alternative to conventional lithium-ion systems due to the abundance and accessibility of sodium resources. Researchers working in this field contribute to advancements in material design, energy density optimization, safety improvements, and commercial viability. Xiaohao Liu’s scholarly activities align with these objectives through research focused on next-generation energy storage solutions.[2]

Research Profile

Based at Wenzhou University in China, Xiaohao Liu has developed a research portfolio centered on sodium-ion battery systems and related electrochemical technologies. The researcher has accumulated 35 indexed publications, received 3,455 citations, and achieved an h-index of 32 according to available bibliometric records. These indicators reflect sustained scholarly engagement and influence within the field of advanced energy materials.[1]

  • Institution: Wenzhou University
  • Research Area: Sodium-ion Batteries
  • Scopus Documents: 35
  • Citation Count: 3,455
  • h-index: 32
  • Recognition Context: Global Scientist Day Awards

Research Contributions

Research contributions associated with Xiaohao Liu include investigations into electrode architecture, electrochemical kinetics, materials engineering, and battery performance enhancement. These studies support ongoing efforts to improve energy storage efficiency and enable wider adoption of sustainable battery technologies. The work contributes to both theoretical understanding and practical implementation of sodium-ion energy storage systems.[2][3]

  • Development of advanced electrode materials.
  • Enhancement of electrochemical performance characteristics.
  • Investigation of charge storage mechanisms.
  • Support for sustainable energy storage technologies.
  • Contribution to international scientific literature.

Publications

The publication record demonstrates active participation in peer-reviewed scientific communication. Research outputs have addressed topics including sodium-ion battery materials, electrochemical performance, and advanced energy storage technologies. Representative scholarly references associated with the field include publications appearing in internationally recognized journals.[3][4]

  • Peer-reviewed journal articles in energy storage research.
  • Studies focusing on sodium-ion battery materials.
  • Collaborative interdisciplinary research outputs.
  • High-impact publications contributing to citation growth.

Research Impact

Research impact may be evaluated through publication quality, citation performance, scholarly visibility, and influence on subsequent scientific investigations. The citation count of 3,455 and h-index of 32 suggest that Liu’s publications have been referenced extensively within the academic community. Such indicators reflect recognition from researchers working in related fields of energy storage, electrochemistry, and materials science.[1]

Award Suitability

The Best Researcher Award emphasizes scientific excellence, research productivity, innovation, and measurable academic impact. Based on available bibliometric indicators and subject specialization, Xiaohao Liu demonstrates attributes commonly associated with award recognition. Contributions to sodium-ion battery research, together with a strong citation profile and scholarly publication record, support consideration within the framework of academic achievement and scientific advancement.[1][2]

Conclusion

Xiaohao Liu’s scholarly profile reflects meaningful engagement in sodium-ion battery research and advanced energy storage science. Through publication activity, citation influence, and contributions to emerging technologies, the researcher has established a notable presence within the academic community. Recognition through the Best Researcher Award aligns with the demonstrated commitment to scientific inquiry, innovation, and knowledge dissemination.

References

  1. Elsevier. (n.d.). Scopus author details: Xiaohao Liu, Author ID 57201097212. Scopus. https://www.scopus.com/authid/detail.uri?authorId=57201097212
  2. Catalytic defect‐repairing using manganese ions for hard carbon anode with high‐capacity and high‐initial‐Coulombic‐efficiency in sodium‐ion batteries
    https://advanced.onlinelibrary.wiley.com/doi/abs/10.1002/aenm.202300444
  3. Long-Cycle-Life Cathode Materials for Sodium-Ion Batteries toward Large-Scale Energy Storage Systems
    https://advanced.onlinelibrary.wiley.com/doi/abs/10.1002/aenm.202300149
  4. Achieving All-Plateau and High-Capacity Sodium Insertion in Topological Graphitized Carbon
    https://advanced.onlinelibrary.wiley.com/doi/abs/10.1002/adma.202302613

Sana Kordoghli | Energy Sustainability | Research Excellence Award

Prof. Sana Kordoghli | Energy Sustainability | Research Excellence Award

University of Carthage-Tunisia | Tunisia

Dr. Sana Kordoghli is an Associate Professor in energy engineering with strong expertise in sustainable energy systems, smart grids, and environmental valorization. She has authored 20 scientific documents, receiving 281 citations across 233 documents, with an h-index of 10. In preview mode, the “View h-index” button is disabled. She founded a Master’s program in Management and Digitalisation of Energy at the University of Carthage and actively contributes to international research projects on hydrogen production, waste-to-energy, and circular economy solutions. She supervises doctoral research and supports innovation and entrepreneurship through academic initiatives.

Citation Metrics (Scopus)

400
300
200
100
0

Citations
281

Documents
20

h-index
10

Citations

Documents

h-index


View Scopus Profile
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Featured Publications

Ashiq Bhat | Energy Sustainability | Research Excellence Award

Mr. Ashiq Bhat | Energy Sustainability | Research Excellence Award

Thapar Institute of Engineering and Technology | India

Ashiq Nazir Bhat is a researcher, educator, and full-stack developer specializing in energy systems, artificial intelligence, and federated learning. He has extensive teaching experience in computer science and has contributed to advanced courses in data science, conversational AI, and predictive analytics. His research focuses on vehicle-to-grid energy optimization, privacy-preserving machine learning, and explainable AI. He has developed smart energy systems, real-time monitoring platforms, and secure web applications. Proficient in multiple programming languages and cloud technologies, he actively contributes to research publications, conferences, and peer review, demonstrating strong expertise in both academic research and practical technology development.

Featured Publications

Ahmed Albojamal | Energy Sustainability | Research Excellence Award

Dr. Ahmed Albojamal | Energy Sustainability | Research Excellence Award

San Diego City College | United States

Dr. Ahmed Albojamal is a mechanical engineer specializing in thermal transport, nanofluids, electronic cooling, and phase change materials. His research focuses on heat transfer enhancement in porous media and metal foams, nanofluid flow modeling, and energy storage systems. He has contributed extensively to understanding particle deposition, natural and forced convection, and thermal management in complex geometries, integrating numerical simulations with experimental analysis. His work advances energy-efficient HVAC systems, thermal management of electronic devices, and sustainable building technologies. With multiple peer-reviewed publications and expertise in both theoretical and applied thermal sciences, he bridges engineering fundamentals with practical energy solutions.

Citation Metrics (Scopus)

  450
  300
   150
    50
       0

Citations
323

Documents
7

h-index
6

Citations

Documents

h-index


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Featured Publications

Atsushi Ishikawa | Energy Sustainability | Research Excellence Award

Dr. Atsushi Ishikawa | Energy Sustainability | Research Excellence Award

IHI Corporation | Japan 

Atsushi Ishikawa is a Senior Researcher at IHI Corporation, Japan, specializing in energy conversion technologies. His expertise spans thermal energy storage systems, fluidized bed technology, and gas–liquid two-phase flow, with strong foundations in mechanical engineering. He has contributed to both industrial innovation and academic research, combining experimental methods with numerical simulations to advance thermal–fluid sciences. His work supports industrial decarbonization and renewable energy integration, particularly through the development of packed bed and circulating fluidized bed thermal energy storage systems. He has authored multiple peer-reviewed publications, conference papers, and corporate technical articles, and has received professional recognition for excellence in engineering research and measurement techniques.

View Orcid Profile

Featured Publications

Rawdah Whba | Energy Sustainability | Research Excellence Award

Dr. Rawdah Whba | Energy Sustainability | Research Excellence Award

Dr. Rawdah Whba | Taiz University & Inonu University | Yemen

Dr. Rawdah Abduh Ghaleb Whba is an Assistant Professor of Chemistry at the Faculty of Applied Sciences, Taiz University, Yemen, and currently a Postdoctoral Researcher at İnönü University, Malatya, Türkiye. She specializes in energy storage and conversion, with a strong research focus on polymer electrolytes, electrode materials, and advanced electrochemical systems including solid-state lithium-ion batteries, sodium-ion batteries, and supercapacitors. Dr. Whba completed two bachelor’s degrees in Chemistry from Taiz University with first-class honours, earning two Presidential Awards of Yemen for academic excellence (2006, 2008). She received an English and computer diploma from NODS (2007) and joined Taiz University as a lecturer in 2009. She obtained her MSc (2017) and PhD (2022) in Chemistry from Universiti Kebangsaan Malaysia (UKM) under prestigious scholarships from the Yemeni Government and the Islamic Development Bank. She later served as a research assistant at UKM before receiving the Türkiye Scholarships Postdoctoral Award (2023–2024), completing a fellowship at Istanbul Medeniyet University. Currently, Dr. Whba works on Na-ion full-cell development, specializing in high-performance cathode materials, pre-sodiation strategies, interfacial engineering, operando analysis, and DFT-supported materials optimization. Her broader expertise includes polymer synthesis, grafted polymers, thin-film membrane fabrication, organic/inorganic materials synthesis, electrochemical characterization, kinetic studies, and materials evaluation for next-generation rechargeable batteries. Dr. Whba has authored numerous Q1 and Q2 Web of Science journals, including publications in Journal of Power Sources, Electrochimica Acta, Ionics, ACS Applied Materials & Interfaces, Langmuir, Advanced Sustainable Systems, Energy Technology, and International Journal of Biological Macromolecules. She has also published impactful review articles and collaborative works involving operando XAS, DFT studies, and biomass-derived electrode materials. She is an active scientific reviewer, contributing to Springer, Elsevier, ACS, Ionics, Carbon Letters, and multiple high-impact journals, reviewing more than 30 manuscripts, book chapters, and conference submissions. Dr. Whba has also provided academic service at Taiz University as Secretariat of the Department and Examination Committee Member and has represented academic staff in the University Syndicate since 2014. A dedicated educator, she has taught a wide range of undergraduate chemistry courses—General, Inorganic, Organic, Analytical, Physical, Biochemistry, and Pharmaceutical Analysis—at Taiz University and other institutions in Yemen. Dr. Whba is a member of several professional bodies including the American Chemical Society (ACS), the International Society of Electrochemistry (ISE), the Polymer Ionic Group (Malaysia), and the Taiz University Staff Syndicate. Her research continues to make significant contributions in polymer chemistry, electrochemistry, and sustainable energy materials, with ongoing work advancing the performance, stability, and scalability of sodium- and lithium-ion energy storage technologies.

Profile: Orcid | Scopus | Google Scholar

Featured Publications

Dogan, E., Maiga, A., Whba, R., Harfouche, M., Ozturk, Z. R., Farhan, A., Altin, E., Duygulu, Ö., Ipek, S., Kartal, R., et al. (2026). Influence of iron doping on α-NaMnO₂ lattice symmetry: Insight from operando X-ray absorption, ex-situ structural analysis, and electrochemical performance using chestnut shell-derived hard carbon. Journal of Power Sources. https://doi.org/10.1016/j.jpowsour.2025.238602

Ateş, M. N., Zengin, F., Whba, R., Tunaboylu, B., Aydemir, U., Peighambardoust, N. S., Karslıoğlu, N. G., Malkoç, H. C., Demiryürek, R., Güleryüz, Ö., et al. (2025). Mechanistic insights into cathode-driven capacity degradation of NMC111/graphite pouch cells under long-term cycling. Electrochimica Acta. https://doi.org/10.1016/j.electacta.2025.147611

Whba, R., Altın, S., Serin, S., Whba, F., Nakir, M. Y., & Sahinbay, S. (2025). Synergistic behavior of epoxidized natural rubber grafted di(ethylene glycol) methyl ether methacrylate-based solid polymer electrolytes: Experimental and density functional theory (DFT) study. Journal of Industrial and Engineering Chemistry. https://doi.org/10.1016/j.jiec.2025.11.038

Whba, R., Sahinbay, S., Whba, F., Nakir, M. Y., & Altin, S. (2025). Unlocking the potential of epoxidized natural rubber (ENR)-based polymer electrolytes: Key strategies, bibliometric insights, and future directions. Langmuir. https://doi.org/10.1021/acs.langmuir.5c00631

Dogan, E., Whba, R., Altin, E., Moeez, I., Chung, K. Y., Stoyanova, R., Koleva, V., Aktas, A., Altin, S., & Sahinbay, S. (2025). Optimized performance of Na₀.₆₇Mn₀.₅Fe₀.₅O₂@TiO₂ and presodiated hard carbon (Pre-SHC) full-cells using direct contact method. Journal of Power Sources. https://doi.org/10.1016/j.jpowsour.2025.236327

Whba, R., Su’ait, M. S., Whba, F., & Ahmad, A. (2024). Research progress on polyacrylonitrile-based polymer electrolytes for electrochemical devices: Insight into electrochemical performance. Journal of Power Sources. https://doi.org/10.1016/j.jpowsour.2024.234539