Prof. Guorui Xu | Strategy and power management | Best Researcher Award

Prof. Guorui Xu | Strategy and power management | Best Researcher Award

North China Electric Power University, China

Author Profile

Scopus 

🎓 Early Academic Pursuits

Professor Guorui Xu’s journey into the realm of electrical engineering began with a solid foundation laid at the Taiyuan University of Technology, where he earned his Bachelor of Engineering in 2007. Motivated by a deep interest in electric machinery, he continued his education at North China Electric Power University (NCEPU) in Beijing. There, he earned both his Master of Engineering in 2010 and Ph.D. in Electric Machines and Apparatus in 2014. These formative years not only provided him with a robust theoretical understanding of electrical systems but also immersed him in research projects that would later form the backbone of his professional legacy. His academic path reflected an unwavering commitment to excellence, setting the stage for a lifelong dedication to innovation in the field of power engineering.

🏛️ Professional Endeavors

Following his doctoral studies, Dr. Xu joined NCEPU as a lecturer, quickly earning recognition for his insightful research and effective teaching methods. After three years of service in this role, he was promoted to Associate Professor, where he remained for five years. Today, he serves as a Professor and Ph.D. Supervisor at NCEPU, continuing to mentor young scholars and lead pioneering research in synchronous generators and power control. In his role, Professor Xu actively engages in large-scale projects that bridge academia with industry, demonstrating a unique ability to translate complex theories into practical, impactful innovations. His position also allows him to contribute to the strategic development of China’s electrical power sector through leadership in research, innovation, and policy advising.

🔬 Contributions and Research Focus

Professor Xu’s research primarily revolves around the development, operation, and control of new-type synchronous generators and condensers—a critical domain within power systems engineering. His scholarly output includes over 150 publications, with 66 indexed in SCI and Scopus databases, illustrating his active engagement with the global academic community. One of his notable papers was recognized as a Top Cited Article by IET Electric Power Applications, underscoring the relevance and resonance of his work among peers.

He has led and participated in 30 major research projects, many of which are supported by competitive funding sources, amounting to over RMB 25 million. His technical expertise is further validated by an impressive portfolio of 29 patents in electric machinery, of which 24 are Chinese invention patents that directly contribute to the innovation ecosystem in the power sector. Additionally, his research extends into electromagnetic force characteristics, transient behavior analysis, and control strategy optimization for dual-excited and doubly-fed machines.

🏅 Accolades and Recognition

Over the years, Professor Xu has received numerous prestigious honors that recognize his contributions to electrical engineering. Notably, he has been awarded two Provincial and Ministerial Science and Technology Progress Awards and five industry and association-level prizes. Two of his papers received the Outstanding Paper Award from the IEEE Industry Applications Society, a testament to their innovation and technical rigor.

In recognition of his service to the academic and professional community, he serves as a Young Editorial Board Member for the journal Large Electric Machine and Hydraulic Turbine and as a Technical Program Committee Member for the 2024 Asia Conference on Energy and Electrical Engineering. He is also a Senior Member of IEEE, a Committee Member of the Chinese Society for Electrical Engineering (CSEE), and an active participant in the Large Electrical Machinery Committee of the Chinese Society for Electrical Technology.

🌐 Impact and Influence

Professor Xu’s impact is visible both in academic circles and in the real-world application of his research. With a Web of Science citation index of over 508, his work influences fellow researchers and practitioners worldwide. His innovations have directly contributed to improving the efficiency, reliability, and sustainability of power systems in China and beyond. He has also served as the team leader for the Outstanding Contribution Team in the Proceedings of the Chinese Society for Electrical Engineering (CSEE), further amplifying his influence in shaping the discourse in electric machinery research.

Moreover, his 20 consultancy projects with industry underscore his ability to translate academic research into technologies and solutions that benefit electrical utilities and manufacturers. His work on excitation control, electromagnetic modeling, and power tracking systems plays a crucial role in modernizing power generation and distribution infrastructures.

🌟 Legacy and Future Contributions

Looking ahead, Professor Guorui Xu remains a visionary in the field of power engineering. His continued focus on the next generation of synchronous machines, with smarter control strategies and environmentally responsive designs, places him at the forefront of China’s efforts toward a low-carbon, energy-efficient future. As a mentor and educator, he is shaping the minds that will carry forward the torch of innovation, ensuring a resilient and sustainable energy ecosystem.

Through his persistent research, academic service, and thought leadership, Professor Xu is not only enhancing the scientific understanding of electrical machinery but also cultivating a legacy of excellence, mentorship, and technological advancement that will inspire generations to come.

📝Notable Publications

Influence of Rotor Damping Structures on Power Tracking Excitation Control Characteristics of Dual-excited Synchronous Generator

Authors: Xu, Guorui; Fu, Yue; Zhang, Jiancheng
Journal: Zhongguo Dianji Gongcheng Xuebao / Proceedings of the Chinese Society of Electrical Engineering
Year: 2025

A New Power Flow Controller Based on Dual-Excited Synchronous Machine

Authors: Xu, Guorui; Li, Qianwei; Wang, Hao; Sun, Fuke; Lin, Jintian
Journal: IEEE Transactions on Industry Applications
Year: 2025

 Electromagnetic Force Characteristics of Doubly-Fed Induction Machines Considering Harmonics from Rotor-Side Converters

Authors: Wang, Chenbo; Wu, Zhiqiang; Ren, Chaofan; Xu, Guorui; Zhao, Haisen
Journal: IEEE Transactions on Industry Applications
Year: 2025

 Numerical Calculation for Transient and Sub-Transient Parameters of Dual-Excited Synchronous Generator Based on Time-Stepping Finite Element Model

Authors: Xu, Guorui; Yang, Guangliang; Shen, Haipeng; Cui, Xueshen; Zhao, Haisen
Journal: IEEE Transactions on Industry Applications
Year: 2025

Reduced-Order Electromagnetic Transient Model Based on Equivalent Flux Linkage Derivative for Induction Motors Under Voltage Sag Condition

Authors: Yang, Guangliang; Guan, Tongyu; Kang, Jinping; Xu, Guorui; Zhao, Haisen
Journal: IET Electric Power Applications
Year: 2024

Assist Prof Dr. Xianshu Qiao | Electrocatalysis | Best Researcher Award

Assist Prof Dr. Xianshu Qiao | Electrocatalysis | Best Researcher Award

Jingdezhen Ceramic University, China

Author Profile

Orcid

🌱 Early Academic Pursuits

Dr. Xianshu Qiao’s journey in materials science began with a strong foundation in chemical engineering. She earned her Master’s degree in Chemical Engineering and Technology from Inner Mongolia University of Technology, China, where she developed a keen interest in chemical processes and reaction mechanisms. Her master’s dissertation, focused on the absorption of sulfur dioxide and the preparation of barium sulfate using a triethylene glycol and dimethyl sulfoxide system, showcased her ability to tackle complex chemical challenges. This early exposure to chemical processes not only honed her analytical skills but also laid the groundwork for her future exploration of catalysis and materials science.

Her academic pursuit reached new heights when she embarked on a Ph.D. program in Materials Science and Engineering at Harbin Institute of Technology, one of China’s top technical universities. Under the mentorship of distinguished professors Wei Qin and Xiaohong Wu, Dr. Qiao focused on the preparation of iridium and iron co-modified β-Ni(OH)₂ electrode materials, with a particular emphasis on their oxygen evolution performance. Her doctoral research was marked by a meticulous approach to material design and synthesis, leading to the development of highly efficient electrode materials. These experiences not only enriched her scientific knowledge but also cemented her passion for electrocatalysis, a field that would become the core of her research career.

💡 Professional Endeavors

Dr. Xianshu Qiao’s career as an academic and researcher has been defined by her role as an Associate Professor of Materials Science at Jingdezhen Ceramic University. In this position, she has seamlessly integrated teaching, mentorship, and research, shaping the next generation of scientists while advancing the field of materials science. Her dedication to education is evident in her ability to inspire students, instilling in them a strong foundation in scientific principles and a curiosity for research.

In her research, Dr. Qiao has established herself as a leading figure in the development of transition metal-based electrocatalysts. Her work centers on the rational design, controlled synthesis, and catalytic reaction mechanisms of materials, particularly those involving nickel, iron, and cobalt compounds. Her extensive research on these materials has led to significant advancements in the efficiency of oxygen evolution reaction (OER) and hydrogen evolution reaction (HER), two critical processes for sustainable energy conversion. As a researcher, she has demonstrated a rare ability to bridge theoretical insights with practical applications, making substantial contributions to the development of efficient, durable catalysts.

🔬 Contributions and Research Focus

Dr. Xianshu Qiao’s research is characterized by a deep understanding of transition metal-based electrocatalysts, particularly those involving nickel, iron, and cobalt. Her focus on the rational design and controlled synthesis of these materials has led to the development of catalysts with exceptional performance in OER and HER. These reactions are vital for renewable energy technologies, including water splitting and hydrogen production.

Her work has resulted in numerous high-impact publications, including 13 SCI papers as the first author in internationally recognized journals such as Applied Catalysis B: Environmental, Small, International Journal of Hydrogen Energy, ACS Applied Materials and Interfaces, and Inorganic Chemistry Frontiers. These publications reflect not only her expertise in the field but also her commitment to advancing scientific knowledge. In addition to her first-author publications, she has co-authored more than 30 SCI papers, demonstrating her ability to collaborate with other researchers and contribute to multidisciplinary projects.

One of her most notable achievements is the development of porous Fe-doped β-Ni(OH)₂ nanopyramid array electrodes for water splitting, a breakthrough that has been widely recognized in the field. Her innovative approach to catalyst design, involving electronic dual modulation and grain boundary engineering, has set a new standard for the performance of transition metal-based catalysts. This work has not only advanced the understanding of catalytic mechanisms but also paved the way for the development of next-generation energy storage and conversion technologies.

🏆 Accolades and Recognition

Dr. Xianshu Qiao’s contributions to materials science have earned her significant recognition in the scientific community. Her research has been published in some of the most prestigious journals in the field, and her work on transition metal-based electrocatalysts has been widely cited by peers worldwide. Her reputation as a leading researcher is further reinforced by her extensive publication record, which includes 13 first-author SCI papers and over 30 co-authored SCI papers.

Beyond her publications, Dr. Qiao has been recognized for her ability to mentor and inspire young researchers. Her role as an educator at Jingdezhen Ceramic University has allowed her to shape the careers of aspiring scientists, fostering a culture of academic excellence and intellectual curiosity. Her dedication to scientific rigor and innovation has made her a respected figure in the academic community.

🌍 Impact and Influence

The impact of Dr. Qiao’s research extends far beyond her publications. Her innovative work on efficient electrocatalysts has the potential to drive the development of sustainable energy solutions, contributing to global efforts to combat climate change. By improving the efficiency of OER and HER, her catalysts can enhance the performance of renewable energy systems, making them more viable for large-scale applications.

As an educator and mentor, Dr. Qiao has influenced the next generation of scientists, equipping them with the skills and knowledge needed to excel in their careers. Her ability to foster a collaborative and intellectually stimulating research environment has inspired many young researchers to pursue careers in materials science.

🌟 Legacy and Future Contributions

Dr. Xianshu Qiao’s legacy is one of scientific excellence, innovation, and mentorship. Her groundbreaking research on transition metal-based electrocatalysts has transformed the field of catalysis, providing new insights into the design and optimization of efficient, durable catalysts. As she continues to explore new materials and catalytic mechanisms, her work will likely lead to further advancements in sustainable energy technologies.

In the future, Dr. Qiao is expected to expand her research into new areas of energy conversion and storage, exploring the potential of novel materials and catalytic systems. Her commitment to education and mentorship will continue to shape the careers of young scientists, ensuring that her legacy endures for generations to come.

📝Notable Publications

 Hierarchical Ultrafine Nanosheet-Based O-Doped FeCoS₂ Microsphere Catalyst for Highly Efficient Oxygen Evolution Reaction

Author: Xianshu Qiao
Journal: International Journal of Hydrogen Energy
Year: 2025

Ultra-Small β-Ni(OH)₂ Quantum Dot Catalyst with Abundant Edges for an Efficient Urea Oxidation Reaction

Author: Xianshu Qiao
Journal: Inorganic Chemistry Frontiers
Year: 2025

Modulating Electronic Structure of Iridium Single-Atom Anchored on 3D Fe-Doped β-Ni(OH)₂ Catalyst with Nanopyramid Array Structure for Enhanced Oxygen Evolution Reaction

Author: Xianshu Qiao
Journal: Small
Year: 2024

 Grain Boundary Density and Electronic Dual Modulation of Intermetallic Co₂B by Fe Doping Toward Efficient Catalyst for Oxygen Evolution Reaction

Author: Xianshu Qiao
Journal: Applied Catalysis B: Environmental
Year: 2022

Novel FeNi-Based Nanowires Network Catalyst Involving Hydrophilic Channel for Oxygen Evolution Reaction

Author: Xianshu Qiao
Journal: Small
Year: 2022

Dr. Amani Aridi | Environmental Sciences | Best Researcher Award

Dr. Amani Aridi | Environmental Sciences | Best Researcher Award

Modern University for Business and Science, Lebanon

Author profile

Orcid 

📚 Early Academic Pursuits

From the earliest stages of her academic life, Amani Aridi demonstrated an exceptional commitment to the sciences. After earning her Bachelor of Science (BSc) in Chemistry from the Lebanese University’s Faculty of Science between 2012 and 2015, she quickly deepened her expertise with a Master’s Degree (M1) in Environmental Chemistry. Not content with a singular specialization, she pursued a second Master’s Degree (M2) in Expertise and Treatment in Environment during 2016–2017, where she gained hands-on technical experience in the American University of Beirut’s Environmental Core Laboratory. Her dedication culminated in a Ph.D. in Physical Chemistry from Beirut Arab University (2018–2022), focusing on the cutting-edge fields of nanoparticle development for environmental applications. These intensive academic pursuits provided her a strong foundation in experimental design, chemical analysis, and environmental remediation.

🏫 Professional Endeavors

Amani’s transition from academia to teaching was both natural and impactful. Her early experience began as a lab instructor at Beirut Arab University, where she mentored students in hands-on chemistry labs. Post-Ph.D., she served as an Assistant Professor (part-time) at Beirut Arab University between 2022 and 2023, teaching a variety of core courses ranging from Advanced Physical Chemistry to Chemical Kinetics. In October 2024, she embraced a full-time Assistant Professor role at the Modern University of Business and Science, Lebanon. Here, she diversified her portfolio by offering both lecture-based and laboratory-based courses such as Organic Chemistry, Chemical Principles, Elementary Chemistry, and Elementary Physics, thereby nurturing the scientific minds of tomorrow.

🔬 Contributions and Research Focus

Amani Aridi’s research is rooted in solving real-world environmental problems using advanced materials science. Her expertise lies in the preparation and characterization of nanoparticles and nanocomposites, with an emphasis on photocatalytic degradation and adsorption techniques for wastewater treatment. She has developed innovative ferrite nanoparticles for the removal of heavy metals and dyes, offering sustainable and efficient methods for pollutant removal. Her work in physical chemistry of interfaces has practical implications in improving water quality, contributing significantly to environmental sustainability initiatives. Additionally, she has maintained a strong presence in scholarly publishing, reviewing manuscripts for prestigious journals such as RSC Advances, Arabian Journal of Chemistry, and Chemical Papers, ensuring the quality and integrity of scientific research.

🏆 Accolades and Recognition

Amani’s contributions have not gone unnoticed. She has been trusted as a peer reviewer for multiple international journals—an honor reserved for researchers with deep expertise and meticulous attention to scientific rigor. She also served as a jury member for the “Spectroscopic Identification of Chemical Compound – Poster Day 2019” event at Beirut Arab University, validating her reputation as a knowledgeable and fair evaluator in academic settings. Her mentoring of graduate students towards their Master’s and PhD degrees further highlights her role as a pillar in her academic community.

🌍 Impact and Influence

Beyond her immediate academic duties, Amani Aridi’s work contributes to larger environmental goals. By focusing on low-cost, efficient nanomaterials for pollution remediation, she addresses critical issues such as water scarcity and pollution—topics of global concern. Her scientific outreach ensures that her influence extends beyond classrooms and laboratories, as she actively shapes discussions around sustainable environmental technologies. Her mentorship, peer reviews, and participation in scientific events continue to inspire and influence upcoming researchers.

🕊️ Legacy and Future Contributions

Looking ahead, Amani Aridi’s legacy is poised to grow. Her commitment to both education and innovative environmental research ensures that she will remain a critical voice in shaping future sustainability technologies. Potential future contributions could include pioneering new-generation nanomaterials, expanding interdisciplinary collaborations, and developing international projects to tackle environmental challenges on a larger scale. With her profound technical skills, passion for teaching, and unwavering dedication to scientific progress, Amani stands as a beacon for future scientists and environmental innovators.

Notable publications 

Exploring the influence of heat treatment duration and temperature on the properties and adsorption performance of Sn₀.₅Ni₀.₃Mn₀.₂Fe₂O₄ nanoparticles

Author: Amani Aridi
Journal: Environmental Science and Pollution Research
Year: 2025

Synthesis, Structural Characterization, and Magnetic Properties of La³⁺- and Bi³⁺-Doped Co–Ni–Zn–Cu Ferrite Nanoparticles

Author: Amani Aridi
Journal: Ceramics International
Year: 2025

Removal of radioactive Co(II) and Sr(II) using (Co₀.₅Zn₀.₅)Fe₂O₄ nanoparticles co-doped with barium and antimony

Author: Amani Aridi
Journal: Ceramics International
Year: 2025

Adsorptive performance of bismuth-doped Ni-Zn-Co ferrite nanoparticles for the removal of methylene blue dye

Author: Amani Aridi
Journal: Environmental Science and Pollution Research
Year: 2024

 Synthesis, Characterization, and Adsorption Performance of (Mg₀.₄Co₀.₄Mn₀.₂)Fe₂−₂ₓSmₓSnₓO₄ Nanoparticles for the Removal of Heavy Metal Ions and Water Treatment

Author: Amani Aridi
Journal: ChemistrySelect
Year: 202

Mr. Kasra Shafiei Power System Resilience | Best Researcher Award

Mr. Kasra Shafiei Power System Resilience | Best Researcher Award

University of tabriz, Iran

Profile

Google Scholar

Early Academic Pursuits 🎓

Kasra Shafiei’s academic journey began in Tabriz, Iran, where his passion for engineering and technology took root. As an inquisitive student, he excelled in scientific subjects, particularly in mathematics and physics, which laid the foundation for his future endeavors. His early education equipped him with the analytical and problem-solving skills necessary to navigate the complexities of electrical engineering and energy systems. Driven by curiosity and an eagerness to explore innovative solutions, he pursued higher education at the University of Tabriz, where he further honed his technical expertise.

Professional Endeavors 🌍

Kasra Shafiei has established himself as a dedicated professional in the fields of energy systems, renewable energy integration, and carbon emission management. His work in optimizing power distribution and enhancing energy resilience has contributed significantly to the development of more sustainable and efficient energy solutions. With proficiency in software tools such as Cytoscape, MATLAB, and Python, he has engaged in complex modeling and analysis to drive advancements in the field.

Beyond academic research, he has contributed as a Teaching Assistant, imparting knowledge to aspiring engineers and researchers. His role as a reviewer for international journals and conferences further highlights his active engagement with the global academic community. By critically evaluating research submissions, he plays a crucial role in maintaining the quality and rigor of scholarly publications in his field.

Contributions and Research Focus 🏰

Kasra Shafiei’s research primarily revolves around the integration of renewable energy resources, battery energy storage systems, and demand response mechanisms. His published journal papers reflect his commitment to addressing the challenges associated with energy management and sustainability. His study, published in The Journal of Engineering, explores strategies for efficiently managing power generation while minimizing carbon emissions. By leveraging renewable resources and storage technologies, the research presents viable solutions for reducing environmental impact. Another notable contribution, published in Journal of Energy Storage, emphasizes the importance of resilience in energy networks, particularly in integrating renewable sources and storage solutions to ensure stability and efficiency.

His work is crucial in the transition toward greener energy solutions, contributing to policy-making and the development of sustainable infrastructures worldwide. His deep understanding of energy storage systems and their integration into existing power grids makes his research valuable in addressing modern challenges in energy security and environmental sustainability.

Accolades and Recognition 🏆

Kasra Shafiei’s contributions have not gone unnoticed. His exceptional academic performance and research initiatives earned him the Outstanding Talent Recognition from the University of Tabriz, a testament to his dedication and intellectual prowess. Additionally, his expertise has led him to serve as a reviewer for international journals and conferences, where he evaluates groundbreaking research and contributes to the advancement of the field.

His certification in HSE Training from the University of Tabriz and his UTEPT (University of Tehran English Proficiency Test) qualification further demonstrate his commitment to professional and linguistic development, equipping him with essential skills to communicate his research on a global scale.

Impact and Influence 🌐

Through his research and professional engagements, Kasra Shafiei has made a meaningful impact in the field of energy systems. His work on optimizing renewable energy integration and carbon management has implications for both academic research and industry applications. As a thought leader, he actively contributes to discussions on sustainable energy, providing insights that shape future technologies and policies.

His role as a Teaching Assistant has also enabled him to mentor and inspire students, fostering the next generation of engineers and researchers. By sharing his expertise and experiences, he empowers young minds to pursue innovative solutions for pressing global challenges.

Legacy and Future Contributions ✨

Looking ahead, Kasra Shafiei is poised to continue his influential work in renewable energy and power system optimization. With an unwavering commitment to sustainability and technological advancement, he aims to further explore the integration of smart grid technologies to enhance energy efficiency. He is also deeply interested in analyzing the economic and environmental impacts of large-scale renewable energy adoption and developing AI-driven models for energy demand forecasting and optimization.

His vision extends beyond academic research, encompassing real-world applications that can drive sustainable development and energy security. As an emerging leader in his field, his legacy will be defined by his contributions to cleaner, more resilient energy systems that benefit future generations.

📝Notable Publications

Planning for a Network System with Renewable Resources and Battery Energy Storage, Focused on Enhancing Resilience

Author: K. Shafiei, S.G. Zadeh, M.T. Hagh
Journal: Journal of Energy Storage
Year: 2024

Integration of Wind Farm, Energy Storage, and Demand Response for Optimum Management of Generation and Carbon Emission

Author: K. Shafiei, M. Tarafdar Hagh, A. Seifi
Journal: The Journal of Engineering
Year: 2024

Optimal Generation and Reduce Carbon Emissions Through the Integration of Wind Turbine, Battery Energy Storage Systems, and Demand Response

Author: K. Shafiei, A. Seifi, M.T. Hagh
Journal: 2024 28th International Electrical Power Distribution Conference (EPDC)
Year: 2024

A Novel Multi-Objective Optimization Approach for Resilience Enhancement Considering Integrated Energy Systems with Renewable Energy, Energy Storage, Energy Sharing, and Demand

Author: K. Shafiei, A. Seifi, M.T. Hagh
Journal: Journal of Energy Storage
Year: 2024