Sara Barati | Environment | Women Researcher Award

Dr. Sara Barati | Environment | Women Researcher Award

Semnan University | Brazil

Author Profiles

Scopus 

Google Scholar

Early Academic Pursuits

Dr. Sara Barati began her academic journey in Chemical Engineering at the University of Arak, Iran, where she obtained her Bachelor’s and Master’s degrees. Her early research was rooted in environmental applications, particularly focusing on the modeling of CO₂ capture in porous media using MATLAB. This strong foundation in computational modeling provided her with essential skills in transport phenomena and process simulation. She further pursued her PhD in Chemical Engineering at the University of Semnan, Iran, where her doctoral research centered on nanocomposites synthesis and the development of advanced proton exchange membranes for fuel cells, coupled with COMSOL Multiphysics simulations.

Professional Endeavors

Dr. Barati’s professional career reflects a seamless integration of computational modeling, experimental fabrication, and interdisciplinary research. She has worked as a Research Assistant at multiple prestigious universities, including Amir Kabir University, Tehran University, and currently at USP University in Brazil. Her roles involved battery modeling, experimental cell assembly, and the design of innovative energy systems. She has also contributed as a course lecturer, offering advanced training in COMSOL Multiphysics, covering domains from electrochemical systems and membrane separation to biomedical simulations and renewable energy applications.

Contributions and Research Focus

Her research contributions span a wide range of energy and material systems, with a primary focus on next-generation batteries (Li-ion, Na-ion, Li-S), fuel cells, nanocomposites, and multiphysics simulations. She has authored impactful articles on battery modeling, sensitivity analysis using Python and machine learning approaches, and optimization of electrochemical performance. Beyond batteries, her projects have addressed fluid flow, heat and mass transfer, CO₂ absorption, membrane design, and microchannel transport phenomena. This broad scope underscores her interdisciplinary expertise and ability to connect materials, chemical processes, and energy systems.

Impact and Influence

Through her work, Dr. Barati has advanced understanding in both the theoretical modeling and practical development of sustainable energy technologies. Her innovative modeling strategies, particularly using COMSOL, Python, and PyBaMM, have provided valuable insights into the commercialization challenges of Li-S batteries and the performance optimization of Na-ion and Li-ion systems. Additionally, her training programs have empowered students and researchers globally to apply multiphysics modeling tools across diverse engineering problems, amplifying her influence as both a researcher and mentor.

Academic Citations

Dr. Barati has published over 10 peer-reviewed articles in reputed international journals, contributing significantly to the scientific discourse in electrochemistry, nanomaterials, and computational modeling. Her publications, indexed on Google Scholar, have been cited by researchers worldwide, reflecting the growing impact of her research in advancing cleaner energy technologies and computational methods in chemical engineering.

Legacy and Future Contributions

Looking ahead, Dr. Barati is poised to make further strides in the development of sustainable energy solutions. Her expertise in coupling data-driven methods with computational modeling positions her at the forefront of future innovations in battery technology and renewable energy systems. With her strong academic and professional background, she is likely to continue bridging gaps between experimental research, advanced simulations, and industrial applications, thereby contributing to the global shift toward sustainable energy.

Conclusion

Dr. Sara Barati exemplifies the qualities of an accomplished woman researcher, with a career marked by dedication to scientific excellence, interdisciplinary innovation, and knowledge dissemination. Her journey-from early academic pursuits in Iran to international research collaborations—demonstrates her resilience, adaptability, and commitment to solving global energy challenges. With her growing research footprint and mentorship, she stands as a strong candidate for recognition through the Women Researcher Award.

Notable Publications

“Separating carbon dioxide from natural gas by a hollow fiber membrane contactor with various absorbents: Numerical investigation of membrane wettability

  • Author: H Rahnema, A Etminan, S Barati, K Pope
  • Journal: Separation and Purification Technology
  • Year: 2025

"‏Numerical Investigation of Heat Transfer and Turbulent Fluid Flow for Transverse Vortex Generators with Nanoparticles

  • Author: S Barati, A Etminan, K Pope
  • Journal: Heat Transfer Research
  • Year: 2024

"Air Pollution Control: A Review of the most Important Methods

  • Author: S Barati, M Soleymani
  • Journal: Iranian Journal of Chemistry and Chemical Engineering
  • Year: 2023

"Preparation, characterization and proton transport of new porous nanocomposite membranes based on polybenzimidazole, lignin and TiO2 nanoparticles for high

  • Author: S Barati, M Mehdipourghazi, M Abdollahi, K Hooshyari, B Khoshandam
  • Journal: International Journal of Energy Research
  • Year: 2021

"Poly (benzimidazole)/poly (vinylphosphonic acid) blend membranes with enhanced performance for high temperature polymer electrolyte membrane fuel cells

  • Author: Z Taherkhani, M Abdollahi, A Sharif, S Barati
  • Journal: Solid State Ionics
  • Year: 2021

 

Meng Yao | High-Barrier Materials | Best Researcher Award

Prof. Meng Yao | High-Barrier Materials | Best Researcher Award

Qingdao University of Science and Technology | China

Author Profile

Scopus

Early Academic Pursuits

Prof. Meng Yao began his academic journey with a Ph.D. in Engineering from the prestigious State Key Laboratory of Fine Chemicals, Dalian University of Technology. During his doctoral training, he developed a strong foundation in chemical engineering and advanced materials research, which set the stage for his future academic career. His early academic pursuits reflect a consistent commitment to exploring the interface of chemistry, engineering, and material sciences, ensuring a solid platform for impactful research contributions.

Professional Endeavors

In 2019, Prof. Yao joined the College of Chemical Engineering at Qingdao University of Science and Technology as a Tier-5 recruited talent. Currently serving as the Director of the Teaching and Research Office and as a Master’s Supervisor, he actively contributes to both academic leadership and student mentorship. His professional journey is marked by a blend of administrative excellence, research supervision, and innovative academic program development, particularly within graduate programs in Chemical Engineering, Light Chemical Engineering, and Materials Science and Engineering.

Contributions and Research Focus

Prof. Yao’s research contributions primarily center on biomass-based functional materials and biomimetic structurally colored materials, with applications in high-performance packaging, optical anti-counterfeiting, and advanced photonic structures. He has published over 20 SCI-indexed papers in high-impact journals, including Advanced Functional Materials, Chemical Engineering Journal, and ACS Applied Materials & Interfaces. Additionally, his innovative work has resulted in 2 granted invention patents. His research reflects a forward-looking approach, bridging sustainability, functionality, and cutting-edge material design.

Impact and Influence

Beyond his publications, Prof. Yao’s influence extends to the wider scientific community. He serves as a Youth Committee Member of the Fine Chemicals Professional Committee of the Chemical Industry and Engineering Society of China (CIESC), where he contributes to advancing the field of chemical engineering at a national level. His role as a mentor in national innovation and entrepreneurship programs further amplifies his impact, nurturing the next generation of researchers and innovators.

Academic Citations

Prof. Yao’s publications in Q1 journals with high impact factors-some exceeding IF 19-demonstrate the visibility and relevance of his research within the international scientific community. Several of his works have been highlighted in journal features and professional press reports, reflecting both academic recognition and practical importance. His scholarship is widely cited, particularly in areas such as sustainable materials, functional films, and photonic crystal technologies.

Legacy and Future Contributions

Prof. Yao’s academic legacy is being shaped by his dual commitment to advancing sustainable material solutions and training future scholars. His pioneering work in stimulus-responsive photonic crystals and biomimetic starch composite films lays the groundwork for transformative applications in security, food packaging, and green technologies. Looking forward, his contributions are poised to influence both academia and industry, aligning with global efforts toward sustainability, functional innovation, and environmentally conscious engineering solutions.

Conclusion

In summary, Prof. Meng Yao exemplifies the qualities of a distinguished researcher whose academic pursuits, professional leadership, and impactful research make him a strong candidate for recognition such as the Best Researcher Award. His ability to bridge fundamental science with practical applications, combined with his mentorship and service to the academic community, ensures that his influence will continue to grow, leaving a lasting legacy in chemical engineering and materials science.

Notable Publications

"High barrier paper-based materials with optical anti-counterfeiting performance.

  • Author: Jiang Y, Tu W, Ma J, Wang W, Cheng H, Zhang X, Meng Y
  • Journal: Progress in Organic Coatings
  • Year: 2025

"Manipulation of random laser by the bandgap in three-dimensional SiO2 photonic crystals

  • Author: Lv H, Shi B, Zhang Y, Guo J, Meng Y, Wang X.
  • Journal: Journal of Luminescence
  • Year: 2024

"A novel paper-based composite film with enhanced oxygen and water vapor barrier properties.

  • Author: Chen X, Xiao B, Yang Y, Jiang Y, Song X, Chen F, Wang W, Wu J, Meng Y
  • Journal: Progress in Organic Coatings
  • Year: 2024

"Biomimetic Robust Starch Composite Films with Super-Hydrophobicity and Vivid Structural Colors.

  • Author: Wang Y, Fan J, Zhao H, Song X, Ji Z, Xie C, Chen F, Meng Y.
  • Journal: International Journal of Molecular Sciences
  • Year: 2023

"The Flotation Separation of Chalcopyrite and Galena: Crystal, Surface, Floatability and Reagents

  • Author: Zhang X, Zhu Y, Mkhonto PP, Meng Y, McFadzean B, Ngoepe PE, O’Connor C.
  • Journal: Separation & Purification Reviews
  • Year: 2023