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

Khuplianlam Tungnung | Energy Sustainability | Best Research Article Award

Global Scientist Day Awards

Khuplianlam Tungnung
School of Planning and Architecture Vijayawada
Khuplianlam Tungnung
Affiliation School of Planning and Architecture Vijayawada
Country India
Scopus ID 57211003892
Documents 9
Citations 34
h-index 4
Subject Area Energy Sustainability
Event Global Scientist Day Awards
ORCID 0000-0002-2140-5897

The Global Scientist Day Awards recognize researchers whose scholarly activities contribute to scientific advancement, interdisciplinary collaboration, and sustainable development. Khuplianlam Tungnung, affiliated with the School of Planning and Architecture Vijayawada, has developed an academic profile focused on Energy Sustainability through peer-reviewed publications and scholarly engagement. Bibliometric indicators, including publication output, citation impact, and author identifiers, provide measurable evidence of academic activity and research visibility within the international scholarly community.[1][2]

Abstract

Khuplianlam Tungnung has established an academic record in Energy Sustainability with research disseminated through indexed scholarly publications. The available bibliometric indicators demonstrate steady scholarly productivity supported by citations and international indexing.These characteristics align with the scholarly evaluation principles commonly applied in academic recognition programs.[1][2]

Keywords

Energy Sustainability, Sustainable Development, Urban Planning, Environmental Planning, Renewable Energy, Green Infrastructure, Climate Resilience, Research Impact, Scientific Publications, Global Scientist Day Awards.

Introduction

Energy sustainability has become a central research priority owing to global concerns regarding climate change, efficient resource utilization, and environmentally responsible development. Academic contributions within this field frequently integrate engineering, architecture, planning, environmental science, and policy research to develop practical and evidence-based solutions.[4]

Research Profile

Khuplianlam Tungnung is affiliated with the School of Planning and Architecture Vijayawada, India.These metrics indicate measurable academic engagement and provide quantitative indicators commonly used for evaluating scholarly influence across international databases.[1][2]

Publications

The available indexed publication record reflects continued participation in peer-reviewed scholarly communication. Research outputs contribute to the literature concerning sustainable planning and energy-related studies. Publications indexed by international databases improve accessibility, discoverability, and long-term scholarly visibility.[1]

Research Impact

Citation metrics, publication indexing, and researcher identifiers collectively indicate academic visibility and measurable research influence. Although bibliometric indicators represent only one dimension of scholarly assessment, they provide useful evidence regarding dissemination and recognition within the scientific community. [1][2]

Award Suitability

Based on the available scholarly information, Khuplianlam Tungnung demonstrates characteristics generally associated with academic recognition, including indexed publications, measurable citation performance, interdisciplinary engagement, and sustained contributions to Energy Sustainability research.[5]

Conclusion

Khuplianlam Tungnung has established a documented academic profile supported by internationally recognized researcher identifiers, peer-reviewed publications, citation records, and sustained contributions to Energy Sustainability. The available scholarly evidence reflects continued participation in research activities relevant to sustainable development and scientific advancement.[1][5]

References

  1. Elsevier (2026.). Scopus author details: Khuplianlam Tungnung, Author ID 57211003892. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57211003892
  2. Google Scholar (2026.). Author Profile: Khuplianlam Tungnung.
    https://scholar.google.co.in/citations?user=UmQ9q3UAAAAJ
  3. ORCID (2026.). ORCID Record: 0000-0002-2140-5897.
    https://orcid.org/0000-0002-2140-5897
  4. Parametric passive design strategy towards sustainable net-zero energy buildings in hot-dry climate zones of India.
    https://www.sciencedirect.com/science/article/abs/pii/S0038092X25002786
  5. Global Scientist Day Awards (2026.). Official Award Website.
    https://scientistday.org/

Yifan Zhao | Clean Energy | Editorial Board Member

Global Scientist Day Awards

Yifan Zhao
Affiliation Nankai University
Country China
Scopus ID 58544664100
Documents 5
Citations 116
h-index 5
Subject Area Clean Energy
Event Global Scientist Day Awards
ORCID 0000-0003-4783-2739

Yifan Zhao
Nankai University, China

Yifan Zhao is a researcher affiliated with Nankai University whose scholarly work contributes to the field of clean energy and sustainable energy technologies. The research profile indexed in Scopus demonstrates consistent scientific activity through peer-reviewed publications, scholarly citations, and measurable academic impact. The Global Scientist Day Awards recognizes researchers whose work advances scientific knowledge through innovation, collaboration, and evidence-based investigation across internationally relevant disciplines.[1]

Abstract

This article presents an academic overview of Yifan Zhao in recognition of participation within the Global Scientist Day Awards. The profile summarizes institutional affiliation, publication metrics, research interests, scholarly productivity, and contributions to clean energy research. Available bibliometric indicators suggest a growing research trajectory supported by peer-reviewed publications and measurable citation performance within internationally indexed literature.[1]

Keywords

Clean Energy, Renewable Energy, Sustainable Development, Energy Conversion, Carbon Neutrality, Green Technology, Environmental Sustainability, Scientific Research, Global Scientist Day Awards, Nankai University.

Introduction

Scientific advancement in clean energy has become increasingly important in addressing global environmental challenges and supporting sustainable economic development. Researchers working within this domain contribute to technological innovation, improved energy efficiency, and environmentally responsible engineering solutions. Academic recognition programs such as the Global Scientist Day Awards encourage international visibility while promoting excellence in scientific research and interdisciplinary collaboration.[2]

Research Profile

Yifan Zhao is affiliated with Nankai University, China. According to Scopus author metrics, the researcher has published five indexed documents that have collectively received 116 citations with an h-index of five. These indicators reflect a developing publication record and measurable scholarly influence within the clean energy research community.[1]

Research Contributions

The research contributions associated with Yifan Zhao focus on advancing scientific understanding in clean energy systems through analytical investigation and peer-reviewed dissemination. The published work supports ongoing discussions related to sustainable energy technologies, efficient resource utilization, and environmentally responsible engineering practices. These contributions provide valuable academic references for researchers working in related disciplines.[3]

Research Impact

Bibliometric indicators demonstrate measurable scholarly visibility through indexed publications, citations, and an established h-index. Citation activity indicates that the published research has contributed to subsequent scientific investigations and has been referenced by researchers working within relevant fields of sustainable energy research.[1]

Award Suitability

Based on the available academic metrics, institutional affiliation, indexed publications, and demonstrated research activity, Yifan Zhao represents a suitable candidate for scholarly recognition within the Global Scientist Day Awards. The documented research profile reflects continued engagement in clean energy research, contribution to peer-reviewed literature, and participation in internationally recognized scientific communication platforms.[1]

Conclusion

Yifan Zhao’s academic profile illustrates a developing record of research excellence supported by internationally indexed publications and citation performance. Continued research in clean energy has the potential to strengthen scientific understanding and support sustainable technological innovation. The Global Scientist Day Awards acknowledges researchers whose work contributes meaningfully to scientific advancement through quality research and international collaboration.[2]

References

  1. Elsevier. (2026). Scopus author details: Yifan Zhao, Author ID 58544664100. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=58544664100
  2. Global Scientist Day Awards. (2026). Official Award Website.
    https://scientistday.org/
  3. Highly Reactive Facet Modulation of Ti-Based MOFs by Selective Anchoring of Au Metal for Photocatalytic H 2 O 2 Production
    https://doi.org/10.1016/j.apenergy.2022.119999

Blessing Ayegba | Clean Energy | Research Excellence Award

Ms. Blessing Ayegba | Clean Energy | Research Excellence Award 

Concordia University | Canada

Blessing Ayegba is a Ph.D. candidate specializing in building energy flexibility, grid-integrated systems, and indoor thermal comfort. Her research focuses on developing scalable, occupant-centered control strategies that enhance energy efficiency while maintaining comfort in buildings. She has contributed to advancing Building Energy Flexibility Indicators and demonstrated practical solutions for reducing peak energy demand through optimized temperature control. Her scholarly impact includes 35 citations, with an h-index of 1 and an i10-index of 1, reflecting emerging influence in the field. Her work integrates renewable energy, storage, and smart systems, supporting resilient and sustainable power grids worldwide.

Citation Metrics (Google Scholar)

40
30
20
10
0

Citations
35

h-index
1

i10index
1

Citations

h-index

i10-index


View Google Scholar Profile
View Orcid Profile

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

Getahun Ayele Tessema | Energy Sustainability | Best Researcher Award

Mr. Getahun Ayele Tessema | Energy Sustainability | Best Researcher Award

Mr. Getahun Ayele Tessema | Indian Institute of Technology Roorkee (IITR) | India

Getahun Ayele Tessema is an emerging researcher and PhD Candidate at the Indian Institute of Technology Roorkee (IITR), specializing in energy efficiency and sustainable built environments. He holds a B.Tech and Master’s degree with distinction and previously served as a Lecturer at Adama Science and Technology University, where he earned the Best Teacher Award for his academic excellence. Currently supported by the prestigious ICCR Africa PhD Scholarship from the Government of India, he continues to advance impactful research in the Built Environment Lab at IIT Roorkee. His academic and professional journey reflects consistent excellence, with active engagement in research, teaching, and community-oriented scientific contributions. He has completed or is working on five research projects, published two journal papers, and maintains a growing citation record accessible through Google Scholar. His collaborative work spans international and institutional partnerships, and he holds memberships in two professional organizations aligned with his research areas. Getahun’s research focuses on energy-efficient buildings, energy modelling, energy-use behaviour, and energy analysis. His contributions offer significant insights into the determinants of household energy-saving behaviour in Ethiopian urban settings. By integrating personal norms with the Theory of Planned Behaviour, he has developed a comprehensive framework that helps understand and influence energy-conscious behaviour. This work supports the development of national energy conservation strategies and provides a scientific basis for formulating building energy codes—an urgent need for sustainable urban growth in Ethiopia. His findings aim to guide policymakers, enhance occupant awareness, and contribute to cleaner energy access through practical, community-responsive solutions. Through his multidisciplinary research, academic leadership, and commitment to sustainable development, Getahun exemplifies innovation, scholarly excellence, and societal impact. His work aligns strongly with the vision of promoting energy-efficient built environments and positions him as a strong candidate for the Best Researcher Award.

Profile: Google Scholar

Featured Publications

Tessema, G. A., Chani, P. S., & Rajasekar, E. (2025). Analysis of residential electricity consumption in Ethiopian condominiums: Leveraging cluster analysis for targeted electrification interventions. In 2025 IEEE 13th International Conference on Smart Energy Grid Engineering (SEGE). IEEE.

Tessema, G. A., Chani, P. S., & Rajasekar, E. (2025). Modelling energy-saving behaviour in Ethiopian urban households: Integrating personal norms and demographic moderators to the theory of planned behaviour. Energy and Buildings, , 116709.

Mahdi Salehi | Energy Sustainability | Editorial Board Member

Prof. Dr. Mahdi Salehi | Energy Sustainability | Editorial Board Member

Prof. Dr. Mahdi Salehi | Ferdowsi University of Mashhad | Iran

Dr. Mahdi Salehi is a highly respected Professor of Accounting at Ferdowsi University of Mashhad, known for his extensive scholarly contributions to the fields of auditing, financial management, and corporate governance. Born in Hidaj City, Zanjan Province, he has established a strong academic presence through a combination of rigorous research, influential teaching, and active engagement in the professional accounting community. Dr. Salehi’s academic background includes degrees in business management, financial management, and accounting. His early academic work explored the role of financial intermediaries in supporting companies listed on the Tehran Stock Exchange, while his doctoral research examined the corporate audit expectation gap in Iran. These foundational studies helped shape his research trajectory and continue to inform his scholarly outlook. His research interests encompass financial management, ownership structure, auditing, banking, corporate governance, and capital markets. He has authored an extensive body of publications in well-regarded refereed and indexed journals. His work addresses key issues such as audit expectations, audit independence, fraud detection, capital market behavior, financial distress prediction, customer satisfaction in banking and insurance, and the relationship between corporate governance structures and organizational performance. Dr. Salehi’s research often focuses on emerging markets, offering valuable insights into the dynamics of financial systems, regulatory environments, and organizational behavior. His comparative studies—particularly those examining audit practices across different countries—have contributed to a deeper global understanding of audit quality and stakeholder expectations. He is fluent in English, Farsi, and Turkish, enabling him to collaborate widely and contribute to international academic dialogue. With active profiles on major scholarly platforms such as Google Scholar and Scopus, Dr. Salehi is recognized for the reach and impact of his research. Through continuous publication, academic leadership, and engagement with diverse research themes, he has become a prominent and influential voice in the field of accounting.

Profile: Google scholar

Featured Publications

Salehi, M., & Rostami, V., & Mogadam, A. (2010). Usefulness of accounting information system in emerging economy: Empirical evidence of Iran. International Journal of Economics and Finance, 2(2), 186–195.

Salehi, M., & Alipour, M. (2010). E-banking in emerging economy: Empirical evidence of Iran. International Journal of Economics and Finance, 2(1), 201–209.

Alipour, M., Salehi, M., & Shahnavaz, A. (2009). A study of on the job training effectiveness: Empirical evidence of Iran. International Journal of Business and Management, 4(11), 63–68.

Hemmatfar, M., Salehi, M., & Bayat, M. (2010). Competitive advantages and strategic information systems. International Journal of Business and Management, 5(7), 158–168.

Salehi, M., Fakhri Mahmoudi, M. R., & Daemi Gah, A. (2019). A meta-analysis approach for determinants of effective factors on audit quality: Evidence from emerging market. Journal of Accounting in Emerging Economies, 9(2), 287–312.

Jimmy Romanos | Energy Sustainability | Excellence in Research

Dr. Jimmy Romanos | Energy Sustainability | Excellence in Research

Dr. Jimmy Romanos | Lebanese American University | Lebanon

Dr. Jimmy Romanos is an Associate Professor of Physics at the Lebanese American University, with a distinguished record in interdisciplinary research spanning thermal physics, materials science, and energy storage. He holds a Ph.D. in Physics from the University of Missouri, USA, and has extensive experience in both academia and industry, including leadership roles as a lead materials scientist in the U.S. and as a consultant in the energy sector. His research focuses on atomic-scale thermodynamic processes in gas adsorption, targeting applications such as carbon dioxide capture, methane and hydrogen storage, gas separation, and lead-free ceramics. Dr. Romanos has been recognized with the Shoman Award for Arab Researchers in Physics, becoming the first Lebanese physicist to receive this honor. He has led numerous funded projects, both intramural and extramural, and holds multiple patents in advanced carbon materials and gas storage technologies. With over a decade of prolific contributions through peer-reviewed publications, conference presentations, and industrial reports, his work bridges computational, theoretical, and experimental approaches to address critical challenges in energy and environmental technologies.

Profile:  Google Scholar 

Featured Publications

Romanos, J., Beckner, M., Rash, T., Firlej, L., Kuchta, B., Yu, P., Suppes, G., … (2012). Nanospace engineering of KOH activated carbon. Nanotechnology, 23(015401), 1–11. https://doi.org/10.1088/0957-4484/23/1/015401

Kuchta, B., Firlej, L., Mohammadhosseini, A., Boulet, P., Beckner, M., … Romanos, J. (2012). Hypothetical high-surface-area carbons with exceptional hydrogen storage capacities: Open carbon frameworks. Journal of the American Chemical Society, 134(36), 15130–15137. https://doi.org/10.1021/ja3062439

Romanos, J., Burress, J., Pfeifer, P., Rash, T., Shah, P., Suppes, G. (2012). High surface area carbon and process for its production. US Patent 20130190542A1.

Beckner, M., Romanos, J., Dohnke, E., … (2011). Analysis of hydrogen sorption characteristics of boron-doped activated carbons. Bulletin of the American Physical Society, 56.

Soo, Y. C., Beckner, M., Romanos, J., Wexler, C., Pfeifer, P., Buckley, P., … (2011). A high volume, high throughput volumetric sorption analyzer. Bulletin of the American Physical Society, 56(1), 20003.

Xue Li | Energy Sustainability | Best Researcher Award

Ms. Xue Li | Energy Sustainability | Best Researcher Award

Ms. Xue Li | Wuhan Institute of Technology | China

Dr. Li Xue received her Ph.D. in Thermal Engineering from Dalian University of Technology in 2021. She is currently a faculty member at the School of Optical Information and Energy Engineering, Wuhan Institute of Technology. Her core research focuses on the near-wall collisions of microscale particles and the fundamentals of particle dynamics. She investigates how microscale interactions influence fluid flow, heat transfer, and energy conversion processes. Her studies contribute to advancing knowledge in microfluidics, aerosol science, and particulate system behavior. By integrating theoretical modeling with experimental validation, she addresses key challenges in microscale transport phenomena. Her work aims to improve the design of energy systems with higher efficiency and better control of particle interactions. She is also interested in the application of microscale particle research in thermal management and engineering systems. Through her academic contributions, she supports interdisciplinary advancements bridging thermal engineering and energy science. Dr. Xue continues to expand her research portfolio while mentoring students in innovative areas of energy and particle engineering.

Profile: Orcid

Featured Publications

Li, X., Xie, J., Dong, M., Chen, S., & Dong, W. (2024). Could the rebound characteristics of oblique impact for SiO₂ particles represent the ash particles? ACS Omega, 9(9), 10564–10574.

Li, X., Dong, M., Zhang, H., Li, S., & Shang, Y. (2020). Effect of surface roughness on capillary force during particle-wall impaction under different humidity conditions. Powder Technology, 369, 253–261.

Li, X., Dong, M., Jiang, D., Li, S., & Shang, Y. (2020). The effect of surface roughness on normal restitution coefficient, adhesion force and friction coefficient of the particle-wall collision. Powder Technology, 361, 311–320.

Li, X., Dong, M., Li, S., & Shang, Y. (2019). Experimental and theoretical studies of the relationship between dry and humid normal restitution coefficients. Journal of Aerosol Science, 130, 67–76.

Dong, M., Mei, Y., Li, X., Shang, Y., & Li, S. (2018). Experimental measurement of the normal coefficient of restitution of micro-particles impacting on plate surface in different humidity. Powder Technology, 334, 52–60.

Dong, M., Li, X., Mei, Y., & Li, S. (2018). Experimental and theoretical analyses on the effect of physical properties and humidity of fly ash impacting on a flat surface. Journal of Aerosol Science, 117, 121–131.

Asif Khan | Clean Energy | Best Researcher Award

Dr. Asif Khan | Clean Energy | Best Researcher Award 

Dr. Asif Khan | University of Science and Technology Bannu kpk | Pakistan

Asif Nawaz Khan is a committed physicist and lecturer at the University of Science and Technology Bannu, with extensive experience in teaching and research at both undergraduate and postgraduate levels. He is currently pursuing a Ph.D. in Physics and has developed strong expertise in computational and theoretical physics, particularly in the design and analysis of 2D and 3D perovskite materials. His research encompasses structural, optical, thermoelectric, elastic, and thermodynamic properties, alongside solar cell device performance, phonon calculations, and molecular dynamics simulations. Proficient in advanced simulation software and machine learning techniques, he actively supervises students in both experiments and computational modeling, contributing significantly to the advancement of materials science.

Profile: Google Scholar

Featured Publications

Khan, A., Khan, N. U., Nawaz, A., & Ullah, K., & Manan, A. (2024). A DFT study to explore structural, electronic, optical and mechanical properties of lead-free Na2MoXO6 (X= Si, Ge, Sn) double perovskites for photovoltaic and optoelectronic applications. Computational and Theoretical Chemistry, 1240, 114834.

Hosen, A., Mousa, A. A., Nemati-Kande, E., Khan, A. N., Abu-Jafar, M. S., … (2025). Systematic computational screening and design of double perovskites Q2LiMH6 (Q= K, Rb; M= Ga, In, Tl) for efficient hydrogen storage: A DFT and AIMD approach. Surfaces and Interfaces, 106608.

Khan, A. N., Rabhi, S., Jehangir, M. A., Charif, R., Khan, N. U., Begagra, A., … (2025). Evaluating A2SrGeI6 (A= K and Rb) lead-free double perovskites: Structural, elastic, and optoelectronic insights for clean energy. Inorganic Chemistry Communications, 174, 113949.

Khan, N. U., Ghani, U., Khan, A., Khan, A. N., Ullah, K., Ali, R., & Fadhali, M. M. (2025). Theoretical insight into stabilities and optoelectronic properties of RbZnX3 (X= Cl, Br) halide perovskites for energy conversion applications. Optical and Quantum Electronics, 57(1), 109.

Rabhi, S., Khan, A. N., Chinoune, O., Charif, R., Bouri, N., Al-Qaisi, S., Sadaf, S., … (2025). Insight into NaSiCl3: A lead-free perovskite for the next generation revealed by DFT and SCAPS-1D. Physical Chemistry Chemical Physics, 27(25), 13490–13507.

Hosen, A., Sadeghi, A., Abdulhussein, H. A., Nemati-Kande, E., Khan, A. N., … (2025). First-principles insights into NaScQH6 (Q= Fe, Ru, Os): Promising high-density hydrogen storage materials. International Journal of Hydrogen Energy, 177, 151392.

Khan, A. N., Khan, N. U., Khan, A., Ali, R., & Fadhali, M. M. (2025). Lead-free, stable, and effective double Ca2TiXO6 (X= Ge, Sn) perovskites for photovoltaic application. Journal of Sol-Gel Science and Technology, 1–13.

Khan, A. N., Kaleem, M., Khan, N. U., Nasir, A., Khan, A., & Abbasi, M. Z. (2026). Multi-functional DFT and SCAPS-1D analysis of lead-free Z2MgGeI6 (Z= Na, K) double perovskites for optoelectronic, photo-catalytic, and photovoltaic applications. Solar Energy Materials and Solar Cells, 294, 113922.

Khan, A. N., Khan, N. U., Kaleem, M., Tanzeel, M., Nasir, A., Hosen, A., Akremi, A., … (2025). Lead-free X2MgGeI6 (X= Rb, Cs) double perovskites for multi-functional energy applications: A DFT and SCAPS-1D perspective. Solid State Sciences, 108049.

Khan, Z., Manan, A., Khan, N. U., Khan, A. N., Khan, A., & Liu, G., … (2025). Exploring Sn-based vacancy-ordered halide double perovskites Na2Sn(Cl/Br)6 for optoelectronic, thermoelectric, and solar-driven hydrogen reduction applications. Chemical Papers, 1–21.

Khan, Z., Manan, A., Khan, N. U., Khan, A. N., Khan, A., Joifullah, S., Al Yeamin, M., … (2025). DFT-driven pressure-induced modulation in K2TIYCl6: Unlocking pressure-responsive physical and photo-catalytic properties. Optical and Quantum Electronics, 57(7), 1–32.