Qiong Ye | Energy Storage | Best Researcher Award

Dr. Qiong Ye | Energy Storage | Best Researcher Award  

Dr. Qiong Ye | Energy Storage | Postdoctoral Researcher at CY Cergy Paris University | France

Dr. Qiong Ye is an accomplished materials chemist recognized for her extensive research in inorganic chemistry, phase change materials, and energy storage technologies. Her scientific journey demonstrates a blend of theoretical insight and experimental precision in the development of advanced functional materials for sustainable energy applications. Dr. Ye earned her Ph.D. in Inorganic Chemistry from Le Mans Université, France, where she focused on the synthesis, crystallography, and thermodynamic behavior of complex oxide systems. She also completed her Master’s degree in the same institution, building a strong foundation in materials chemistry and thermodynamic studies. Currently, Dr. Qiong Ye serves as a Postdoctoral Researcher at CY Cergy Paris Université, France, where she investigates phase change materials and ionic conductors for thermal management and energy conversion systems. Her professional experience includes prior administrative leadership in Guangdong Meili Matériaux de Construction Ltd., China, where she coordinated R&D projects and material manufacturing processes before transitioning fully into academic research. Dr. Ye’s research interests encompass phase diagram analysis, solid-state chemistry, ionic conductivity, and numerical simulation of energy materials. She is particularly focused on the synthesis and structural characterization of oxide systems that enhance the performance and efficiency of energy storage and conversion devices. Her research skills include solid-state synthesis, X-ray and electron diffraction, impedance spectroscopy, thermal analysis, and computational modeling, complemented by proficiency in scientific software such as HighScore, FullProf, Jana, and Vesta. Dr. Ye’s interdisciplinary expertise bridges chemistry, physics, and materials engineering, contributing to several peer-reviewed publications in reputable journals such as Journal of Solid State Chemistry, Energy and Buildings, and The European Physical Journal Plus. Her works are indexed in Scopus and recognized for their contributions to advancing the understanding of material behavior under thermal and structural transitions. She has been involved in international collaborations promoting energy-efficient materials and sustainable technologies while demonstrating leadership in laboratory management and mentoring young researchers. Dr. Qiong Ye’s career reflects excellence, innovation, and dedication to advancing global energy materials research. Her achievements and continuous contributions to the scientific community make her a deserving candidate for academic recognition and future leadership in the field of materials chemistry.

Profile: ORCID

Featured Publications

Ye, Q. (2025). Experimental and numerical simulation study on the thermal performance of building envelope structures incorporating the solid–solid phase change material. Energy and Buildings. Citations: 12

Ye, Q. (2023). Phase diagram studies on ternary La₂O₃–MoO₃–CaO system. Journal of Solid State Chemistry. Citations: 8

Ye, Q. (2023). Phase diagram studies on ternary La₂O₃–WO₃–CaO system. Journal of Solid State Chemistry. Citations: 7

Ye, Q. (2022). You certainly know the second law of thermodynamics, do you know its connection to other laws of physics and chemistry? The European Physical Journal Plus. Citations: 15

Ye, Q. (2022). Partial re-investigation of the ternary diagram La₂O₃–Nb₂O₅–CaO, synthesis and characterization of the Ca₂La₃Nb₃O₁₄ and Ca₈La₈Nb₁₄.₄□₁.₆O₅₆ compounds. Journal of Solid State Chemistry. Citations: 10

Ye, Q. (2022). Cation-deficient Ca-doping lanthanum tungstate Ca₂.₀₆La₂.₆₁□₀.₃₃W₂O₁₂: Structure and transport property study. Journal of Solid State Chemistry. Citations: 9

Ye, Q. (2021). Investigation of phase change behavior in lanthanum-based oxide systems for energy storage applications. Materials Chemistry and Physics. Citations: 6

Zhongjun Yan | Energy and Sustainability | Best Researcher Award

Dr. Zhongjun Yan | Energy and Sustainability | Best Researcher Award

Dr. Zhongjun Yan | Energy and Sustainability | Associate Professor | Hunan University of Humanities Science and Technology | China

Dr. Zhongjun Yan is a distinguished scholar and lecturer at the School of Energy and Electrical Engineering, Hunan University of Humanities, Science and Technology. His professional journey reflects an enduring commitment to advancing renewable energy systems, sustainable heating and cooling technologies, and innovative energy storage methods. With strong academic credentials and a growing body of impactful research, Dr. Zhongjun Yan has established himself as an emerging leader in energy engineering. His work bridges theoretical modeling, computational methods, and experimental studies, enabling both scientific innovation and practical applications. He has become a significant contributor to the field of energy storage and solar-based systems, earning recognition through quality publications and participation in national-level and institutional research projects.

Professional Profile 

Education

Dr. Zhongjun Yan earned his doctoral degree in Heating, Ventilation, and Air-Conditioning Engineering from Hunan University, where his research was focused on the unconstrained melting process of phase change materials and the enhancement of heat transfer in thermal storage systems. His education combined advanced computational modeling, simulation techniques, and experimental validation, shaping a comprehensive expertise in sustainable energy. The doctoral thesis he completed contributed directly to the understanding of thermal storage efficiency and optimization methods in hot water tanks, providing new directions for future energy system development. This academic foundation has been critical to his current research on solar heating, air-conditioning, and the performance of energy storage units.

Experience

In his role as a lecturer, Dr. Zhongjun Yan has undertaken responsibilities that extend across teaching, mentoring, and research. His involvement in the Outstanding Youth Program of the Hunan Provincial Department of Education reflects his growing leadership in energy-related projects. He has contributed to the design and execution of research focusing on computational fluid dynamics (CFD), unconstrained melting phenomena, and heat transfer enhancement. His academic service also includes guiding students in advanced research methodologies and promoting innovation in energy storage and renewable systems. Moreover, Dr. Zhongjun Yan has presented his work at respected international conferences, where he has shared novel findings on the performance of phase change materials. Through these engagements, he has built professional connections that have broadened his collaborative network in the global energy research community.

Research Interest

Dr. Zhongjun Yan’s research interests lie at the intersection of renewable energy systems, thermal engineering, and phase change materials. His primary focus is on the heat transfer performance and optimization of phase change materials to improve the efficiency of thermal energy storage. He has dedicated extensive work to developing new approaches for enhancing the functionality of solar heating water systems and solar air-conditioning systems. Additionally, his research explores innovative modeling techniques to simulate unconstrained melting behaviors, allowing for more accurate predictions of system performance. His long-term vision is to create energy storage and distribution methods that can significantly reduce reliance on non-renewable resources and address the growing global demand for sustainable solutions.

Award

Dr. Zhongjun Yan has been actively involved in award-nominated research programs, most notably recognized through the Outstanding Youth Program by the Hunan Provincial Department of Education. This recognition highlights his innovative contributions to the study of energy storage systems and his leadership potential in advancing renewable technologies. His dedication to pushing the boundaries of engineering solutions in energy efficiency positions him as a strong candidate for international recognition and professional excellence awards.

Selected Publications

  • Performance enhancement of cylindrical latent heat storage units in hot water tanks via wavy design, Renewable Energy, published 2023, 55 citations.

  • A hybrid method for modeling the unconstrained melting of phase change material in hot water tanks, Energy and Buildings, published 2022, 38 citations.

  • Unconstrained melting of phase change material in cylindrical containers inside hot water tanks: Numerical investigation and effect of aspect ratios, Journal of Energy Storage, published 2022, 42 citations.

  • Impact of ultrasound on the melting process and heat transfer of phase change material, presented at International Conference on Applied Energy, published 2018, 27 citations.

Conclusion

Dr. Zhongjun Yan has made meaningful contributions to the field of renewable energy and thermal systems engineering. His work has advanced the knowledge of phase change materials, enhanced the performance of energy storage units, and contributed to the improvement of solar-based heating and cooling technologies. His consistent research output in respected journals, combined with his active role in academic projects and presentations at international conferences, highlights his professional dedication and scientific influence. Dr. Zhongjun Yan is not only a promising researcher but also a mentor and contributor to the broader academic and energy community. With a strong trajectory of impactful research and leadership potential, he represents the qualities of innovation, academic excellence, and societal contribution that make him highly deserving of recognition through this award nomination.

 

Faran Vahedian | Environmental Science | Best Researcher Award

Faran Vahedian | Environmental Science | Best Researcher Award

Mrs Faran Vahedian, Colorado School of Mines, United States

Dr. Faran Vahedian, Ph.D. 🏞️, is an environmental engineer and hydrogeologist with 10 years of experience in groundwater contamination and environmental remediation. She completed her PhD at Colorado School of Mines, focusing on PFAS transport in AFFF-impacted media 🌊. Dr. Vahedian specializes in numerical modeling, data analysis, and laboratory work using tools like MODFLOW, FEFLOW, and Python 🖥️. She has worked on various projects, including remediation of PFAS contamination, and collaborated with experts to develop analytical methods using LC-MS. Currently, she is a Senior Research Engineer at EA Engineering, Science, and Technology, contributing to EPA’s PFAS research and remediation projects 🔬.

Publication Profile

Orcid

Education

Dr. Faran Vahedian is a passionate researcher in Civil and Environmental Engineering, with a Ph.D. from Colorado School of Mines (2024). She holds a Master’s in Water Engineering from the University of Guelph (2021) and a Bachelor’s in Civil Engineering from Shahid Beheshti University, Tehran (2014). Dr. Vahedian has a strong background in environmental solutions and engineering design. She is also certified in OSHA HAZWOPER, highlighting her expertise in hazardous waste operations. Her education and certifications reflect her commitment to advancing sustainability and safety in the engineering field. 🌍🔧🎓💧💼

Experience

Dr. Faran Vahedian is a skilled researcher and hydrogeologist with extensive experience in environmental remediation and groundwater contamination. From 2021 to 2024, she successfully completed a SERDP ESTCP project on PFAS transport, conducting lab experiments and numerical modeling with HYDRUS. Previously, she worked as a hydrogeologist, conducting groundwater quality assessments, leachate simulations, and flood risk evaluations. As a wastewater treatment plant design engineer, she ensured water quality control and optimized treatment systems. With expertise in GIS, Python, and modeling tools like SWAT, FEFLOW, and HEC-RAS, Dr. Vahedian contributes to sustainable water management and environmental protection. 🌍💧🔬🌿

EA Project Experience

Mrs. Faran Vahedian is a Senior Research Engineer at EA Engineering, Science, and Technology, Inc. (2024–Present), focusing on PFAS research and development. She supports projects like the Remedial Investigation Report for the BJAT LLC Superfund Site and evaluates PFAS sources, mass balance, and groundwater impacts at multiple Air National Guard installations. She also provides analytical and technical support to the EPA’s Office of Research and Development, researching PFAS and contaminants of emerging concern. Additionally, she leads a Water Research Foundation project, developing regulatory frameworks and decision-making tools for PFAS residual management. 💧🔬🌍🧪

Professional Recognition

Dr. Faran Vahedian is a skilled professional with extensive experience in leading engineering firms and environmental organizations. She has contributed significantly to large-scale projects, including the remediation of PFAS at multiple Air National Guard installations. Her expertise in advancing research methodologies for environmental contaminants has played a crucial role in improving environmental protection practices. Dr. Vahedian’s work continues to make a lasting impact on both industry standards and environmental health, showcasing her dedication to sustainable solutions. 🌍🔬💧🌱

Career Development 

Dr. Vahedian’s progression from hydrogeologist to senior research engineer, with roles in prestigious organizations like EA Engineering, reflects her significant career growth and her ongoing contributions to high-impact research projects, particularly related to PFAS and contaminants of emerging concern. 

Research Focus

Faran Vahedian’s research focuses on the transport and behavior of chemical substances in environmental systems, particularly in unsaturated media. Her work, including studies on tension-driven flow, explores the movement of aqueous film-forming foam (AFFF) in porous environments, which is crucial for understanding its impact on water and soil contamination. By integrating hydrological modeling and field experiments, she examines how fluids interact with unsaturated soils and groundwater, aiming to improve environmental protection and remediation strategies. Her interdisciplinary research contributes to water quality management, environmental engineering, and sustainable practices. 🌍💧🌱🔬

Publication Top Notes