Masoumeh Bararzadeh Ledari | Energy | Best Researcher Award

Best Researcher Award

Masoumeh Bararzadeh Ledari
Affiliation Amirkabir University of Technology
Country Iran
Scopus ID 57221272178
Documents 29
Citations 523
h-index 11
Subject Area Energy
Event Award and Honors
ORCID 0000-0002-8152-0264

Masoumeh Bararzadeh Ledari
Amirkabir University of Technology, Iran

Masoumeh Bararzadeh Ledari is a researcher whose scholarly work is centered on the field of energy science, with particular attention to sustainable materials, nanotechnology, catalysis, and environmentally responsible engineering solutions. Her publication record demonstrates consistent engagement with multidisciplinary research that supports cleaner energy production, advanced catalytic systems, and innovative material design. Through peer-reviewed publications and measurable scholarly impact, she has contributed to the growing body of knowledge in energy-related sciences while collaborating with international research communities. Her academic profile indicates a sustained commitment to scientific excellence and innovation, making her a suitable candidate for academic recognition.[1]

Abstract

The academic activities of Masoumeh Bararzadeh Ledari reflect continuous contributions to energy research through interdisciplinary investigations involving nanomaterials, catalytic technologies, and sustainable engineering. Her scientific publications demonstrate practical approaches to improving energy conversion processes and environmentally friendly material development. With an established citation record and internationally indexed publications, her work contributes to both fundamental science and applied engineering while supporting innovation in sustainable energy systems.[2]

Keywords

Energy; Nanotechnology; Catalysis; Sustainable Materials; Green Chemistry; Environmental Engineering; Advanced Functional Materials; Renewable Energy.

Introduction

Modern energy research increasingly relies on advanced materials capable of improving efficiency while minimizing environmental impact. Researchers working in this field contribute to technological progress through innovative experimental methods and interdisciplinary collaborations. Masoumeh Bararzadeh Ledari has participated in this evolving scientific landscape by investigating functional materials and catalytic systems applicable to sustainable energy technologies.[3]

Research Profile

According to indexed scholarly databases, her academic profile includes 29 publications, 523 citations, and an h-index of 11. These indicators reflect continuous scientific productivity and measurable influence within the energy and materials science community. Her research frequently combines chemistry, nanotechnology, and engineering principles to address practical scientific challenges.[1]

Research Contributions

Development of advanced nanostructured materials for sustainable energy applications. Research on catalytic systems that improve reaction efficiency and environmental compatibility. Investigation of multifunctional materials supporting green chemistry and renewable technologies. Contribution to interdisciplinary collaborations integrating chemistry, engineering, and material science.

Publications

Her publication portfolio consists of peer-reviewed articles indexed in international databases covering catalysis, nanomaterials, energy storage, functional materials, and sustainable chemical technologies. These publications have accumulated significant citations, reflecting recognition by the broader scientific community.[4]

Research Impact

The citation performance of her publications demonstrates continued academic relevance and international visibility. Her research supports ongoing developments in cleaner technologies, advanced catalysts, and sustainable material innovation, contributing to scientific advancement and future technological applications within the energy sector.[5]

Award Suitability

Considering her publication record, scholarly citations, interdisciplinary research activities, and measurable scientific impact, Masoumeh Bararzadeh Ledari demonstrates characteristics commonly associated with candidates for research excellence awards. Her sustained contributions to energy science and advanced materials align with the objectives of academic recognition programs promoting innovation, scientific quality, and international research collaboration.[2]

Conclusion

Masoumeh Bararzadeh Ledari has established a notable academic profile through impactful publications, interdisciplinary energy research, and measurable scholarly influence. Her work continues to support sustainable technological development while contributing valuable scientific knowledge to the international research community. These achievements collectively demonstrate a strong foundation for recognition through the Best Researcher Award.

References

  1. Elsevier. (n.d.). Scopus Author Details: Masoumeh Bararzadeh Ledari, Author ID 57221272178.
    https://www.scopus.com/authid/detail.uri?authorId=57221272178
  2. ORCID. (n.d.). Researcher Profile.
    https://orcid.org/0000-0002-8152-0264
  3. Mousakhani, N., Khaleghian, A., Ledari, M. B., & Fani, M. (2026). Nexus powered e-fuels: Integrating energy, water, waste, and climate for sustainable power to X in resource-constrained coastal regions (Preprint). SSRN.
    https://papers.ssrn.com/sol3/papers.cfm?abstract_id=6818894
  4. Kordi, A., Mohebbi, K., & Ledari, M. B. (2026). Pathways to deep decarbonization: Integrating H2–NG blends, flexible storage, and sector coupling in a policy-driven energy model. Energy Conversion and Management: X.
  5. Khosroshahi, S. P., Ledari, M. B., Ceresht, T. E., Ahmadi, S., Sabet, A. F., & Maleki, F. (2026). Closing the loop: 4E valorisation of waste-PET into renewable fuels.
    https://doi.org/10.1016/j.fuel.2026.138367

Mousami Prasad | Energy | Best Researcher Award

Best Researcher Award

Mousami Prasad
Indian Institute of Technology Kanpur

Mousami Prasad
Affiliation  Indian Institute of Technology Kanpur
Country India
Scopus ID 59789320600
Documents 4
Citations 14
h-index 2
Subject Area Energy
Event Award and Honors
ORCID 0000-0002-5873-8978

Mousami Prasad is associated with Brno University of Technology and has contributed to scholarly research within the field of Energy. Her published research, indexed in Scopus, demonstrates participation in internationally recognized scientific communication through peer-reviewed publications. The available bibliometric indicators, including citation counts and h-index, provide measurable evidence of academic engagement and research visibility.[1]

Abstract

This article summarizes the academic profile of Mousami Prasad in relation to the Best Researcher Award. The profile highlights scholarly productivity, research metrics, institutional affiliation, and contributions within the Energy discipline. Bibliometric indicators available through Scopus demonstrate measurable research dissemination and citation activity, while publication records indicate participation in peer-reviewed scientific literature.[2]

Keywords

Energy, Sustainable Engineering, Scientific Publications, Scopus, Research Metrics, Citation Analysis, Academic Recognition, Best Researcher Award.

Introduction

Academic awards recognize researchers whose work demonstrates scholarly quality, scientific integrity, and measurable research influence. Evaluation commonly includes publication records, citation indicators, institutional affiliations, and contributions to advancing specialized knowledge. Such assessments provide a transparent basis for recognizing sustained academic performance.[3]

Research Profile

Mousami Prasad is affiliated with Brno University of Technology and conducts research associated with Energy-related topics. According to the available Scopus profile, the researcher has authored four indexed documents, accumulated fourteen citations, and achieved an h-index of two. These metrics reflect an emerging research portfolio with recognized scholarly visibility.[1]

Research Contributions

Peer-reviewed research contributions in Energy-related scientific fields. Participation in internationally indexed scholarly publications.  Research dissemination through recognized academic databases. Support for evidence-based scientific advancement through published studies.

Publications

The researcher’s publication portfolio includes peer-reviewed journal articles indexed within Scopus. These publications contribute to the broader Energy research community and provide a foundation for citation-based evaluation. Representative research outputs include publications.

Research Impact

Bibliometric indicators suggest that the published work has received scholarly attention through citations. Although the publication portfolio remains compact, citation activity demonstrates engagement by the research community and indicates growing visibility within the Energy discipline. Such metrics are commonly considered alongside qualitative assessment during academic evaluations.

Award Suitability

Based on the available academic profile, Mousami Prasad demonstrates characteristics frequently considered during Best Researcher Award evaluations, including peer-reviewed publications, indexed scholarly output, measurable citation performance, and institutional affiliation. Final award decisions typically depend upon comprehensive review criteria established by the organizing committee.

Conclusion

The academic record of Mousami Prasad reflects active participation in Energy research through indexed publications and measurable scholarly impact. The documented bibliometric information provides an objective overview suitable for academic recognition pages and supports consideration within research award programs emphasizing publication quality, citation performance, and scientific contribution.

External Links

References

  1. Elsevier. (n.d.). Scopus author details: Mousami Prasad, Author ID 59789320600. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=59789320600
  2. ORCID. (n.d.). Researcher Profile.
    https://orcid.org/0000-0002-5873-8978
  3. Prasad, M., & Suresh, L. (2023). Another side of industrial growth in India: Environmental damage from industrial accidents. Safety Science, 164, 106152.
  4. Bhattacharya, P., & Prasad, M. (2026). How do Indian states fare in electricity decarbonization? A consumption-based decomposition analysis at subnational level

Chao’en Li | Hydrogen Energy | Research Excellance Award

Prof. Chao’en Li | Hydrogen Energy | Research Excellance Award

Prof | The University of  Wenzhou University | China

Professor. Chao’en Li is an internationally recognized expert in hydrogen energy, carbon capture, and green fuel technologies. His research emphasizes techno-economic modelling, catalyst development, and energy-efficient processes for CO₂ capture and conversion. He has pioneered innovative approaches integrating low-temperature plasma technology and advanced computational methods to enhance hydrogen production and storage systems. His contributions span renewable energy systems, ammonia-based fuels, and liquid organic hydrogen carriers, addressing critical challenges in sustainable energy transitions. With an outstanding academic profile of 73 publications, 2,752 citations, and an h-index of 28, his work demonstrates strong global impact. His interdisciplinary research connects chemical engineering, materials science, and environmental sustainability, enabling scalable and cost-effective solutions for decarbonization and future clean energy infrastructures.

                            Citation Metrics ( Scopus )

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Niima Es-sakali | Energy | Women Researcher Award

Dr. Niima Es-sakali | Energy | Women Researcher Award 

Doctorate, at Green Energy Park (UM6P-IRESEN), Morocco.

Dr. ES-SAKALI Niima is a distinguished researcher specializing in energy efficiency, thermal sciences, and AI applications in building technologies. Currently, she serves as a Post-Doctoral Fellow at Green Energy Park (UM6P – IRESEN) and as an Adjunct Professor at the School of Architecture and Planning, UM6P, starting September 2024. Her academic journey culminated in a Ph.D. focusing on sustainable building technologies, with significant contributions to modeling, simulation, and AI-based optimization. Dr. Niima has held guest lecturer roles internationally and is a Guest Editor for the peer-reviewed journal Environments (MDPI). Her research bridges academic rigor and real-world applications, leading national projects, collaborating globally, and mentoring early-career researchers. She has advanced Morocco’s research capacity in smart energy systems and contributed to open-access knowledge on climate-smart architecture.

Professional Profile

Scopus

ORCID

Google Scholar

🎓 Education 

Dr. Niima completed her Ph.D. in Energy Efficiency, Thermal Sciences, and Building AI Applications, focusing on sustainable building technologies. Her doctoral research emphasized modeling, simulation, and AI-based optimization techniques to enhance energy efficiency in building systems. She has since contributed significantly to the field, with over 20 peer-reviewed publications in high-impact journals such as Applied Energy, Sustainable Cities and Society, and Renewable and Sustainable Energy Reviews. Her academic background provides a strong foundation for her current roles at Green Energy Park and UM6P, where she continues to advance research in energy-efficient building systems and AI applications. Dr. Niima’s educational journey reflects a commitment to addressing global challenges in building energy systems and sustainability.

💼 Experience 

Dr. Niima’s professional experience spans academia, research, and industry. At Green Energy Park (UM6P – IRESEN), she leads research initiatives focusing on energy efficiency and AI applications in building technologies. Her role as an Adjunct Professor at the School of Architecture and Planning, UM6P, starting September 2024, underscores her commitment to education and mentorship. Dr. Niima has been involved in international collaborations, including a completed project with Offenburg University-Germany, financed by the DAAD, focusing on rural school buildings. She is also engaged in ongoing research projects related to smart control strategies for HVAC systems and energy-efficient urban planning for net-zero energy buildings. Her consultancy experience includes a project centered on building certification (LEED), demonstrating her ability to bridge research and practical applications in the field of sustainable building technologies.

🔬 Research Interests 

Dr. Niima’s research interests encompass building energy systems, HVAC optimization, AI applications in building technologies, passive design strategies, digital twins, thermal comfort, energy modeling, and the development of net-zero energy buildings. She has developed innovative, AI-enhanced methods for optimizing HVAC systems and building energy use, contributing to climate-responsive design in semi-arid regions. Her work bridges academic rigor and real-world applications, leading national projects, collaborating globally, and mentoring early-career researchers. Dr. Niima’s contributions have advanced Morocco’s research capacity in smart energy systems, focusing on achieving net-zero energy buildings using passive and AI-optimized strategies tailored for climate responsiveness. A notable contribution is a multi-objective optimization framework for rural Moroccan schools, improving energy efficiency by up to 35.6% and thermal comfort across six climatic zones, contributing to affordable and sustainable school designs.

🏆 Awards 

Dr. Niima’s exemplary contributions to sustainable building technologies have been recognized through various awards and honors. Her innovative research in energy-efficient building systems and AI applications has garnered attention in both academic and professional circles. Notably, she has been nominated for the Women Research Award, acknowledging her significant impact in the field. Her work has also led to national projects and international collaborations, further cementing her reputation as a leader in sustainable building technologies. Dr. Niima’s commitment to advancing research capacity in Morocco and her contributions to open-access knowledge on climate-smart architecture underscore her dedication to addressing global challenges in building energy systems and sustainability.

📚 Top Noted Publications 

Dr. Niima has authored over 20 peer-reviewed publications in high-impact journals, including Applied Energy (Impact Factor: 10.1), Sustainable Cities and Society (Impact Factor: 10.5), and Renewable and Sustainable Energy Reviews (Impact Factor: 16.3). Her research covers topics such as HVAC optimization, energy modeling, passive design strategies, and net-zero energy buildings. One of her significant contributions is a multi-objective optimization framework for rural Moroccan schools, which improved energy efficiency by up to 35.6% and thermal comfort across six climatic zones. This work has been cited in various articles, highlighting its impact on the field. Dr. Niima’s publications reflect her commitment to advancing knowledge in sustainable building technologies and her dedication to addressing climate-responsive design challenges.

1. Review of Predictive Maintenance Algorithms Applied to HVAC Systems

2. Implementing a Digital Twin-Based Fault Detection and Diagnosis Approach for Optimal Operation and Maintenance of Urban Distributed Solar Photovoltaics

  • Authors: S.I. Kaitouni, I. Ait Abdelmoula, Niima Es-Sakali, Mohamed Oualid Mghazli, H. Er-retby, et al.

  • Journal: Renewable Energy Focus, Article 100530

  • DOI: 10.1016/j.ref.2024.100530

  • Year: 2024

  • Summary: This paper presents a digital twin-based approach for fault detection and diagnosis in urban distributed solar photovoltaic systems, aiming to optimize their operation and maintenance.

3. Recent Progress, Limitations, and Future Directions of Macro-Encapsulated Phase Change Materials for Building Applications

  • Authors: I. Ait Laasri, Niima Es-Sakali, Moha Cherkaoui, Mohamed Oualid Mghazli, A. Outzourhit

  • Journal: Renewable and Sustainable Energy Reviews, Article 114481

  • DOI: 10.1016/j.rser.2024.114481

  • Year: 2024

  • Summary: This review discusses the advancements, challenges, and future prospects of macro-encapsulated phase change materials in building applications, focusing on their thermal performance and integration into building systems.

4. Energy Efficiency and Hygrothermal Performance of Hemp Clay Walls for Moroccan Residential Buildings: An Integrated Lab-Scale, In-Situ, and Simulation-Based Assessment

5. Static and Dynamic Glazing Integration for Enhanced Building Efficiency and Indoor Comfort with Thermochromic and Electrochromic Windows

  • Authors: Niima Es-Sakali, Samir Idrissi Kaitouni, Imad Ait Laasri, Mohamed Oualid Mghazli, Moha Cherkaoui

  • Journal: Thermal Science and Engineering Progress, Volume 52, Article 102681

  • DOI: 10.1016/j.tsep.2024.102681

  • Year: 2024

  • Summary: This paper investigates the integration of static and dynamic glazing, including thermochromic and electrochromic windows, to enhance building energy efficiency and indoor comfort. The study demonstrates energy savings and improved thermal and visual comfort. ScienceDirect

6. Evidence-Based Numerical Building Model Enhancement and Building Energy Efficiency Evaluation in the Case of Morocco

  • Authors: Niima Es-Sakali, Samir Idrissi Kaitouni, Imad Ait Laasri, Mohamed Oualid Mghazli, Moha Cherkaoui, M. Bühler

  • Journal: Case Studies in Thermal Engineering, Article 103606

  • DOI: 10.1016/j.csite.2023.103606

  • Year: 2023

  • Summary: This study enhances numerical building models with empirical data to evaluate building energy efficiency in Morocco, providing insights into energy-saving strategies tailored to local conditions.

7. Advanced Predictive Maintenance and Fault Diagnosis Strategy for Enhanced HVAC Efficiency in Buildings

  • Authors: Niima Es-Sakali, Zakaria Zoubir, Samir Idrissi Kaitouni, Mohamed Oualid Mghazli, Moha Cherkaoui, Jens Pfafferott

  • Journal: Applied Thermal Engineering, Article 123910

  • DOI: 10.1016/j.applthermaleng.2024.123910

  • Year: 2024

Conclusion

Dr. Niima Es-Sakali demonstrates a robust blend of academic rigor, innovative research, leadership, and global collaboration, especially in the field of sustainable and AI-driven energy systems. Her contributions align strongly with the ethos of the Women Researcher Award, particularly in terms of gender representation, climate impact, and emerging technologies. With minor enhancements in professional affiliations and broader outreach, she has the potential to serve as a role model for women in engineering and sustainability fields.