Xiaojiang Ye – New Building Materials – Green Building Excellence Award

Xiaojiang Ye - New Building Materials - Green Building Excellence Award

Researcher at Wuhan Institute of Technology

Specializing in refrigeration, cryogenics, and HVAC systems, Xiaojiang Ye has demonstrated substantial expertise in energy-efficient building technologies and thermal environmental control. With a strong foundation in both engineering and applied research, the primary focus lies in building envelope design, HVAC system optimization, and simulation-based performance analysis. Years of academic training and hands-on engineering experience have enabled contributions to a variety of scientific and industrial projects, particularly in air conditioning systems and artificial environment regulation. Ye's career trajectory reflects a balance of academic rigor and practical innovation in energy and environmental engineering.

Professional Profile

Scopus

Education

Completed doctoral studies in Refrigeration and Cryogenics Engineering at Shanghai Jiao Tong University and earned a Master’s degree in HVAC Engineering from Xi’an University of Architecture & Technology. The academic journey began with a Bachelor’s degree from the same institution, with a strong focus on environmental and municipal engineering. These qualifications have provided the technical backbone for applied research in building energy systems and thermal engineering. Also received foundational engineering training at the Wuhan Safety & Environment Protection Research Institute, laying the groundwork for subsequent practical applications and academic inquiry.

Professional Experience

With considerable experience at Wuhan Institute of Technology, Ye has actively engaged in the design, research, and simulation of HVAC systems and building structures. Played key roles in the development of environmental control systems and energy-saving technologies in buildings. Involved in multiple national and institutional research projects at both Master's and PhD levels, covering aspects like performance optimization, environmental regulation, and system design. Professional activities span both academic mentorship and the advancement of sustainable building technologies, positioning Ye as a key contributor in applied thermal engineering and passive climate control systems.

Research Interest

Research focuses include passive temperature control using advanced composite materials, phase change materials (PCMs), air conditioning system simulation, and artificial thermal environment regulation. Ye explores optimization strategies for refrigeration and HVAC integration, contributing to smarter, more efficient building envelopes. Current interests also involve using expanded perlite with composite PCMs for enhanced thermal storage and efficiency in sustainable buildings. The scope extends into environmental adaptability, especially in urban and industrial architecture. Through experimental and simulation-based approaches, the work aims to innovate building thermal management under dynamic climate conditions.

Award And Honor

Recognized for contributions to building thermal engineering and energy optimization, Ye has received commendations related to innovative PCM applications and HVAC system performance studies. Active participation in leading research forums and technical committees reflects the academic and professional recognition earned through consistent contributions to energy-saving technologies. Awards also acknowledge collaborative research and development efforts with institutions and enterprises aimed at low-energy architecture and smart building designs. These honors illustrate a commitment to enhancing building comfort, sustainability, and engineering excellence through scientifically validated approaches.

Research Skill

Ye demonstrates proficiency in computational modeling, performance simulation, and thermal system optimization for building environments. Skilled in integrating phase change materials into structural elements for enhanced passive temperature control, especially using binary mixtures and natural porous materials like expanded perlite. Well-versed in developing and evaluating advanced HVAC systems for dynamic thermal regulation and efficiency improvements. Employs tools and techniques for environmental performance assessment and experimental validations. Capable of leading complex multidisciplinary research initiatives with a focus on real-world applications in energy-efficient design.

Publications

Ye has authored multiple peer-reviewed articles addressing thermal performance in cold plates, forecasting models using neural networks, and the role of PCMs in sustainable construction. Key publications include work on binary decanoic acid-paraffin composite PCMs and their performance in expanded perlite for building envelopes, as well as studies utilizing variational mode decomposition and LSTM neural networks for power forecasting. Additional research on heat transfer in grid-channeled cold plates has also gained academic attention. These studies contribute meaningful insights into both theoretical models and practical innovations in applied thermal engineering.

Title: Binary decanoic acid-paraffin composite PCMs in expanded perlite and passive temperature control in building envelopes
Journal: Applied Thermal Engineering, 2025

Title: Photovoltaic Power Forecasting Based on Variational Mode Decomposition and Long Short-Term Memory Neural Network
Journal: Energies, 2025

Title: Study on heat transfer performance of cold plate with grid channel
Journal: Scientific Reports, 2024

Conclusion

Xiaojiang Ye’s work embodies a cross-disciplinary approach that bridges building science, material innovation, and environmental control. With a strong academic foundation, numerous research contributions, and proven expertise in HVAC systems, Ye continues to push the frontiers of sustainable building technologies. Ongoing research targets the integration of smart materials and simulation methods to improve energy efficiency and indoor comfort. The professional trajectory suggests an enduring commitment to impactful, solution-driven engineering research. Through academic collaborations and practical implementation, Ye is contributing to the evolution of energy-resilient infrastructures.

Xuemei Wei | Materials Science and Engineering | Best Paper Award

Dr Xuemei Wei | Materials Science and Engineering | Best Paper Award


Assistant Researcher, Shaoxing University, China

Dr. Xuemei Wei is an accomplished researcher specializing in metal-organic chemistry and catalysis. She holds a Ph.D. in Physical Chemistry from the Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences. Her expertise lies in the development of nano-catalytic materials for environmental and energy applications. With over 12 SCI publications in high-impact journals, she has made significant contributions to catalyst design and chemical transformations. Currently, she serves as an Assistant Researcher at Shaoxing University, where she advances research in pharmaceutical and chemical sciences. Her work integrates innovative nanomaterials to address environmental challenges and sustainable energy solutions.

PROFESSIONAL PROFILE

Scopus

EDUCATION

πŸŽ“ Ph.D. in Physical Chemistry – Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences (2018-2021)
πŸ“ Thesis: Design and Mechanism of Efficient Carbonylation Catalysts under Ambient Conditions.
πŸŽ“ M.Sc. in Inorganic Chemistry – Inner Mongolia University (2013-2016)
πŸŽ“ B.Sc. in Chemistry – Jilin Normal University (2009-2013)

PROFESSIONAL EXPERIENCE

πŸ”¬ Assistant Researcher – Shaoxing University, College of Chemistry and Chemical Engineering (2021-Present)
πŸ” Focus: Development of nano-catalytic materials for industrial and environmental applications.
πŸ§ͺ R&D Specialist – Changchun Zhongke Haorong New Materials Research Co., Ltd. (2016-2018)
πŸš€ Developed and optimized catalytic materials for large-scale industrial use.

AWARDS & HONORS

πŸ† Recognized for research contributions in metal-organic chemistry.
πŸ“œ Multiple SCI-indexed publications in top-tier journals.
🌍 Acknowledged for innovative approaches in environmental catalysis.

RESEARCH FOCUS

πŸ§ͺ Catalysis Under Ambient Conditions: Development of carbonylation catalysts for industrial applications.
🌱 Environmental Nanomaterials: Engineering nanomaterials for pollutant degradation and remediation.
⚑ Sustainable Energy Catalysis: Exploring hydrodeoxygenation reactions for green chemistry solutions.

PUBLICATION TOP NOTES

πŸ“„ Turning on Ambient Conditions Hydrodeoxygenation of Biobased Aromatic Alcohols – Energy Conversion and Management (2025)
πŸ“„ Construction of MXene-loaded Nanoscale Zero-Valent Iron for ReO4-/TcO4- Sequestration – Separation and Purification Technology (2024)
πŸ“„ Deciphering the Facet-Dependent Scavenging Potential of Ξ±-Fe2O3 Nanocrystals – Applied Surface Science (2024)
πŸ“„ Crucial Size Effect on Dicarbonylation of Acetylene Over Pd/CsHPMo Catalysts – Dalton Transactions (2024)
πŸ“„ Targeting Phosphodiesterase 4 as a Therapeutic Strategy for Cognitive Improvement – Bioorganic Chemistry (2023)
πŸ“„ Vesicular BiVO4 Nanostructures Modified by g-C3N4 Quantum Dots – Materials Science in Semiconductor Processing (2024)
πŸ“„ Synergistic Effect of Hematite Facet and Pd Nanocluster for Acetylene Dicarbonylation – Molecular Catalysis (2021)
πŸ“„ Strong Metal-Support Interactions Between Palladium Nanoclusters and Hematite – New Journal of Chemistry (2020)
πŸ“„ Highly Efficient Selective Dicarbonylation of Acetylene Catalyzed by Palladium Nanosheets – New Journal of Chemistry (2020)
πŸ“„ Catalyst in Acetylene Carbonylation: From Homogeneous to Heterogeneous – Progress in Chemistry (2020)
πŸ“„ Advances in Research on Structure-Activity Relationship in Hydrogenation Catalysts – Chemical Industry and Engineering Progress (2020)
πŸ“„ Support Morphology-Dependent Catalytic Activity of Co/CeO2 for Phenol Hydrogenation – New Journal of Chemistry (2020)

CONCLUSION

Dr. Xuemei Wei is a leading researcher in catalysis and nanomaterials, making significant strides in environmental and sustainable chemistry. Her contributions to metal-organic chemistry and catalytic performance have earned her recognition in top scientific journals. As an Assistant Researcher at Shaoxing University, she continues to develop innovative solutions for industrial and environmental challenges. πŸš€πŸ”¬

Himanshu Mamgain | Sustainable and environmental friendly corrosion prevention coatings | Best Researcher Award

Mr Himanshu Mamgain | Sustainable and environmental friendly corrosion prevention coatings | Best Researcher Award

JRF, University of Petroleum and Energy Studies, (UPES), India

Himanshu Prasad Mamgain is a dedicated Ph.D. scholar at the University of Petroleum and Energy Studies (UPES), Dehradun, India, with a specialization in material science and surface coatings. His academic and research journey focuses on the development of innovative anti-corrosion, anti-microbial, and superhydrophobic coatings. Himanshu’s work emphasizes sustainable and bio-inspired solutions for enhancing material durability and efficiency, particularly in energy and industrial applications. He has received accolades for his exceptional oral presentations and has participated in prestigious international conferences and workshops, contributing to advancements in material science.

PROFISSIONAL PROFILE

Google Scholar

STRENGTHS FOR THE AWARD

  1. Academic Excellence: Himanshu Prasad Mamgain has a robust educational background with an excellent academic record, including an ongoing Ph.D. at UPES and a remarkable performance in M.Sc. (84%) and B.Sc. (74%).
  2. Innovative Research Focus: His work on superhydrophobic coatings for corrosion resistance, energy storage, and anti-microbial applications demonstrates innovation and alignment with contemporary industrial challenges.
  3. Recognition in Research: Awards like the Best Oral Presentation at the “Himalaya Calling” summit and consistent participation in prestigious conferences and workshops showcase his ability to present impactful research.
  4. Publication Record: Publications in reputed journals like ECS Journal of Solid State Science and Technology and Results in Engineering highlight his contributions to material science, especially in superhydrophobic and bio-inspired coatings.
  5. Interdisciplinary Approach: His work integrates machine learning with material science, as evidenced by studies on stability prediction and analysis of coatings, indicating a forward-thinking research methodology.

AREAS FOR IMPROVEMENT

  1. Wider Collaborative Engagement: Increasing collaborations with international researchers and institutions could further enhance his research exposure and global impact.
  2. Practical Applications: While his research is innovative, expanding its implementation in real-world scenarios and industrial partnerships can solidify its utility.
  3. Diversity in Research Output: Exploring additional topics within material science, such as eco-friendly materials or sustainable alternatives, can broaden his expertise.
  4. Funding Acquisition: Securing research grants and funding for independent projects will demonstrate his ability to lead large-scale research initiatives.

EDUCATION

Himanshu is pursuing his Ph.D. at UPES, Dehradun, India, focusing on material science and coatings since July 2022. He earned an M.Sc. in Physics with 84% from Hemwati Nandan Bahuguna Garhwal Central University in 2020 and a B.Sc. in PCM with 74% from the same university in 2018. Earlier, he achieved 74.6% in his 12th Science from Government Inter College, Dehradun, and 76% in his 10th from the same institution under the Uttarakhand Board. His strong academic foundation drives his research in material science.

PROFESSIONAL EXPERIENCE

Himanshu Prasad Mamgain has actively contributed to material science research through diverse collaborations and projects. He has presented papers at international conferences, including the ACS symposium and BTU Rajasthan’s applied science summit. He participated in workshops like the Indian Nanoelectronics Users Program (IIT Delhi) and advancements in magnetism (VIT-AP). Himanshu also contributed to the development of durable anti-icing and superhydrophobic coatings for energy applications, showcasing his dedication to innovation and practical problem-solving in material science.

AWARDS AND HONORS

Himanshu has been recognized with several awards, including the Best Oral Presentation at the Global Summit on “Himalaya Calling,” UPES. He has presented papers at esteemed international events like VIT-AP University and BTU Rajasthan. His participation in the Indian Nanoelectronics Users Program at IIT Delhi and international workshops on magnetism reflects his active engagement in advancing material science. Additionally, he has consistently delivered oral presentations at the Young Researcher Conclave in UPES, showcasing his academic excellence and leadership in research forums.

RESEARCH FOCUS

Himanshu’s research focuses on material science, particularly the development of superhydrophobic coatings for corrosion resistance and energy storage. His work incorporates bio-inspired and machine learning-based methodologies to enhance coating efficiency on metals like copper and aluminum. His projects also explore antimicrobial and anti-corrosive properties using advanced techniques like electrodeposition and multilayer coatings. Himanshu’s contributions aim to address industrial challenges through sustainable and innovative material solutions, reinforcing his commitment to advancing science for practical applications.

PUBLICATION TOP NOTES

πŸ“˜ Fabrication of Nanostructured Corrosion-Resistant Superhydrophobic Coatings on Copper by Electrodeposition
πŸ“˜ A Review on Bio-inspired Corrosion Resistant Superhydrophobic Coating on Copper Substrate
πŸ“˜ Aqua Barrier: Polypropylene/Stearic Acid-Infused Zn-ZnO-Cu Multilayer Superhydrophobic Coatings
πŸ“˜ Effect of Quantity of Plant Extract on Biomedical Applications of Phytoconstituents Coated ZnONPs
πŸ“˜ Machine Learning-Based Stability Prediction of Polypropylene Cu-MA Superhydrophobic Coating on Aluminum

CONCLUSION

Himanshu Prasad Mamgain is an outstanding candidate for the Best Researcher Award due to his exceptional academic background, innovative research contributions, and recognition within the scientific community. While further global collaborations and practical applications of his research can elevate his profile, his current achievements in material science and surface coatings make him a deserving recipient of this prestigious honor. His dedication to sustainable and advanced material solutions aligns well with the criteria for excellence in research.