Wang Yuqi | Engineering | Best Researcher Award

Mr. Wang Yuqi | Engineering | Best Researcher Award

postgraduate | Harbin Engineering University | China

Mr. Wang Yuqi is an accomplished researcher from Harbin Engineering University with a strong foundation in Mechanical and Electronic Engineering and Marine Robot systems, excelling in the field of engineering through his work on advanced robotics and intelligent control systems. His academic journey includes a master’s focus on marine robotics and an undergraduate specialization in mechanical and electronic engineering, supported by numerous honors and scholarships that highlight his academic excellence. His professional experience spans leading roles in engineering projects, including the design and optimization of deep-sea exploration ROV control systems, intelligent unmanned hovercraft, and sea cucumber robot technologies, where he applied cutting-edge engineering methodologies such as FreeRTOS-based scheduling, STM32 circuit design, FPGA communication protocols, and ROS data processing. He has further contributed as an intern at the National Deep Sea Base Management Center and Midea Group, where he advanced engineering solutions for marine exploration and motor control systems. His research interests lie in engineering design for underwater robotics, intelligent control, sensor integration, and embedded systems, which have led to recognition in national and international competitions. Mr. Wang Yuqi’s engineering expertise is complemented by strong skills in programming (C/C++, MATLAB), simulation and design tools, communication protocols, and hardware debugging, making him a versatile and innovative researcher. His achievements in engineering, both academically and professionally, have earned him awards, leadership roles, and recognition for his contributions to innovation in robotics and intelligent systems, reflecting a promising career in engineering research and application. 13 Citations, 6 Documents, 3 h-index

Profiles: Scopus | ORCID

Featured Publications

1. Zhang, H., Sun, Y., Zhao, Y., Xie, Y., Li, X., Wang, Y., & Zhao, C. (2024). Corrosion and carburization of Ni<sub>3</sub>Al-based superalloys in high-temperature carbon dioxide. Materials and Corrosion.

2. Huang, Y., Wang, Y., Yu, S., Zhang, H., & Zhao, C. (2024). Hot deformation behavior and dynamic recrystallization mechanisms of a Mn-Cu damping alloy. Materials Today Communications.

3. Huang, Y., Wang, Y., Yu, S., Zhang, H., & Zhao, C. (2024). Hot deformation behavior and dynamic recrystallization mechanisms of a Mn-Cu damping alloy. SSRN.

4. Li, X., Yu, S., Huang, Y., Wang, Y., Zhang, H., & Zhao, C. (2024). Impact of secondary γ’ precipitate on the high-temperature creep properties of DD6 alloy. Metals and Materials International.

5. Huang, Y., Wang, Y., Yu, S., Zhao, C., Zhao, Y., & Zhang, H. (2024). Influence of aging heat treatment on microstructure and mechanical properties of a novel polycrystalline Ni3Al-based intermetallic alloy. SSRN.

Takwa Hamdi | Engineering | Women Researcher Award

Ms. Takwa Hamdi | Engineering | Women Researcher Award

PhD Candidate | National Engineering School of Gabes | Tunisia

Ms. Takwa Hamdi is a dedicated PhD student in Mechanical Engineering with a strong foundation in Engineering education, holding a bachelor’s, master’s, and doctoral-level specialization in Mechanical and Energy Engineering, with her research focusing on advanced combustion modeling, dual-fuel internal combustion engines, and sustainable alternative fuels. Her professional Engineering experience includes serving as an adjunct lecturer, where she taught courses on dismountable assembly processes, welding, CAD design, and supervised Engineering design projects, equipping students with practical and theoretical knowledge of Engineering principles. Her research interest lies in energy efficiency, low-emission combustion technologies, and the application of Engineering simulation tools such as Ansys Forte, SolidWorks, Matlab, Autocad, Mastercam, Abaqus, and Gnuplot, where she applies computational fluid dynamics and numerical methods to optimize Engineering performance. She has also contributed to scientific publications in the domain of dual-fuel compression ignition engines, showcasing her commitment to advancing Engineering sustainability. Ms. Hamdi has been recognized academically as a class valedictorian, which highlights her excellence and honor in the field of Engineering. Her Engineering research skills encompass analytical thinking, problem solving, and innovation, reinforced by her active engagement in teaching and scientific collaboration. In conclusion, Ms. Takwa Hamdi demonstrates a remarkable blend of Engineering knowledge, professional experience, and research capability, making her a promising researcher whose Engineering contributions are expected to have a significant impact on energy and sustainability fields.

Profile: Scopus

Featured Publications

1. Effects of H2 substitution on combustion and emissions in ammonia/diesel compression ignition engine. (2025). Energy Conversion and Management.

Dr. Nitesh Mondal | Engineering | Best Researcher Award

Dr. Nitesh Mondal | Engineering | Best Researcher Award

Assistant Professor at Ghani Khan Choudhury Institute of Engineering and Technology | India

Dr. Nitesh Mondal has built a distinguished profile in engineering through extensive research, teaching, and academic contributions. His work focuses on mechanical engineering with specialization in fluid mechanics, electrohydraulic systems, and pump design. Through engineering research, he integrates theoretical modeling, simulation, and real-time experiments to solve complex engineering challenges. He has contributed widely to engineering through teaching roles at several prestigious institutes and has authored impactful publications. His engineering expertise combines academic depth with practical problem-solving. His engineering background, coupled with active participation in international collaborations and conferences, has strengthened both his technical skills and his ability to guide innovative projects in engineering for future technological advancements.

Professional Profiles

Google Scholar Profile | ORCID Profile

Education 

Dr. Nitesh Mondal pursued advanced education in engineering, developing strong technical foundations in mechanical engineering and fluid mechanics. His academic training enabled him to excel in engineering research, focusing on mathematical modeling, dynamic systems, and experimental validation within complex engineering setups. With a Doctor of Philosophy in mechanical engineering, he established his ability to lead engineering projects, develop innovative designs, and optimize systems. His engineering education encompassed deep exploration of pump mechanisms, servo systems, and dynamic control processes, shaping his approach to high-level engineering challenges. This engineering-focused learning path provided him with the critical skills necessary for advancing scientific solutions and contributing significantly to academia, industry, and future engineering development.

Experience 

Dr. Nitesh Mondal has gained substantial professional experience across multiple engineering institutions. His career spans assistant professorships, research fellowships, and technical team memberships, all centered on mechanical engineering and related technologies. His work included teaching core engineering subjects, supervising projects, and conducting specialized research in pump design, fluid mechanics, and servo systems. He engaged in government-funded engineering projects, contributing design audits, simulations, and experimental studies. These experiences enabled him to bridge academic theory with practical engineering applications. Through engineering leadership in academic and industrial collaborations, he cultivated a comprehensive skill set valuable for solving modern engineering challenges while nurturing future engineers through innovative, research-oriented educational practices.

Research Interest 

Dr. Nitesh Mondal’s research interests encompass fluid mechanics, electrohydraulic systems, pump design, multiscale computational analysis, and materials behavior under dynamic conditions — all deeply rooted in engineering principles. His engineering projects have explored axial piston pump optimization, servo valve control, scaffold architecture, and mechanical responses of biomedical structures under fluid perfusion. By combining engineering simulations with experimental validation, he addresses challenges in both industrial and biomedical applications. His engineering research integrates computational fluid dynamics, material science, and system design, aiming to improve efficiency, stability, and performance. Through engineering-focused interdisciplinary collaboration, his interests continue to expand the boundaries of applied mechanical engineering, contributing to innovation in emerging technologies worldwide.

Award and Honor

Dr. Nitesh Mondal has received recognition in engineering through various awards, professional appointments, and academic memberships. His engineering contributions include invited research presentations, conference leadership, and participation in international symposiums. He has been entrusted with curriculum development, serving as a technical expert on engineering syllabus committees and advisory boards. His engineering achievements are acknowledged through editorial roles in reputed journals and professional memberships in prestigious engineering societies. His honors underline the value of his engineering research, which combines theoretical insight with practical innovation. These recognitions serve as a testament to his impactful contributions in the engineering field, advancing knowledge, practice, and education while inspiring emerging engineers and researchers.

Research Skill

Dr. Nitesh Mondal possesses a robust set of research skills, deeply aligned with engineering innovation. His expertise includes computational modeling, system dynamics, mechanical design, materials testing, and multi-domain simulations — all crucial to modern engineering challenges. Skilled in MATLAB, ANSYS, LabVIEW, and advanced CAD tools, he effectively translates engineering concepts into validated prototypes. He demonstrates strength in experimental setup design, data analysis, and optimization of engineering systems for improved performance. His engineering research approach integrates theory, simulation, and experimentation, producing results relevant to academia and industry alike. These engineering skills allow him to develop high-impact solutions that address complex technical problems and contribute to sustainable engineering advancements globally.

Publication Top Notes 

Title: A novel method to design pressure compensator for variable displacement axial piston pump
Journal: Proceedings of the Institution of Mechanical Engineers, Part E: Journal of …
Authors: N Mondal, R Saha, S Mookherjee, D Sanyal
Citation: 21

Title: A study on electro hydraulic servovalve controlled by a two spool valve
Journal: International Journal of Emerging Technology and Advanced Engineering
Authors: N Mondal, BN Datta
Citation: 12

Title: Designing of different types of gyroid scaffold architecture to achieve patient-specific osseointegration friendly mechanical environment
Journal: International Journal for Multiscale Computational Engineering
Authors: A Gupta, M Rana, N Mondal, A Das, A Karmakar, AR Chowdhury
Citation: 10

Title: Modelling and prediction of micro-hardness of electroless Ni-P coatings using response surface methodology and fuzzy logic
Journal: Jordan Journal of Mechanical and Industrial Engineering
Authors: S Sarkara, R Mandala, N Mondalb, S Chaudhuric, T Mandald, ...
Citation: 9

Title: A single stage spool valve for the pressure compensator of a variable displacement pump: design, dynamic simulation and comparative study with a real pump
Journal: Sādhanā
Authors: N Mondal, R Saha, D Sanyal
Citation: 7

Title: An experimental exploration on pressure-compensated swash plate-type variable displacement axial piston pump
Journal: Journal of The Institution of Engineers (India): Series C
Authors: N Mondal, R Saha, D Sanyal
Citation: 7

Title: A finite element study and mathematical modeling of lumbar pedicle screw along with various design parameters
Journal: Journal of Orthopaedic Science
Authors: JK Biswas, N Mondal, S Choudhury, A Malas, M Rana
Citation: 6

Title: Assessment of mechanical responses between trabecular bones and porous scaffolds under static loading and fluid flow conditions: a multiscale approach
Journal: International Journal for Multiscale Computational Engineering
Authors: P Samanta, S Kundu, A Gupta, M Rana, N Mondal, AR Chowdhury
Citation: 5

Title: Determination of Optimum Design Parameters for Gyroid Scaffolds to Mimic a Real Bone-Like Condition In Vitro: A Fluid Structure Interaction Study
Journal: Journal of Engineering and Science in Medical Diagnostics and Therapy
Authors: A Gupta, M Rana, N Mondal
Citation: 5

Title: Performance Evaluation and Frequency Response Analysis of a Two Stage Two Spool Electrohydraulic Servovalve with a Linearized Model
Journal: Engineering Transactions
Authors: N Mondal, B Datta
Citation: 5

Title: Parametric optimization and minimization of corrosion rate of electroless Ni–P coating using Box-Behnken design and Artificial Neural Network
Journal: Results in Surfaces and Interfaces
Authors: A Mallick, R Mandal, N Mondal, S Sarkar, N Biswas, B Maji, G Majumdar
Citation: 4

Title: A novel approach to design compensator actuators for a swash plate axial piston pump along with the experimental validation
Journal: International Journal of Dynamics and Control
Authors: N Mondal
Citation: 4

Title: Design and design investigations of a flow control spool valve
Journal: International Journal on Interactive Design and Manufacturing (IJIDeM)
Authors: A Ghosh, A Gupta, N Mondal
Citation: 4

Title: A finite element based comparative study of lumbosacral pedicle screw fixation and artificial disc replacement
Journal: Journal of Engineering and Science in Medical Diagnostics and Therapy
Authors: JK Biswas, A Banerjee, N Mondal, M Rana
Citation: 3

Title: Effect of Dynamic Swiveling Torque and Eccentricity on the Design of Compensator Cylinders for a Variable Displacement Axial Piston Pump–Modelling & Simulation
Journal: Jordan Journal of Mechanical and Industrial Engineering
Authors: Ishita De, Subhasish Sarkar, Shouvik Chaudhuri, Nitesh Mondal*, Niraj Kumar
Citation: 3

Title: Pressure compensator design, simulation and performance evaluation of a variable displacement swash plate type axial piston pump
Journal: Sigma Journal of Engineering and Natural Sciences
Authors: N Mondal, R Saha, D Sanyal
Citation: 2

Title: Effect of damping length on dynamic performance of two-stage two-spool electrohydraulic servovalve
Journal: Fluid Mechanics and Fluid Power–Contemporary Research: Proceedings of the …
Authors: N Mondal, B Datta
Citation: 2

Title: Evaluating the mechanical responses on a cell under fluid perfusion: A multiscale computational method
Journal: Results in Surfaces and Interfaces
Authors: P Samanta, S Kundu, A Gupta, M Rana, N Mondal, AR Chowdhury
Citation: 1

Title: FEA Based Design and Stability Study of Electroless Ni-P Coating Plated over a Stepped Shaft under Thermal Load
Journal: Australian Journal of Mechanical Engineering
Authors: T Hassan, S Sarkar, T Mandal, N Mondal, G Majumdar
Citation: 1

Title: Finite Element Analysis of Maxillary Anterior Dentition During Retraction With Varying Level of Bone Support
Journal: Journal of Engineering and Science in Medical Diagnostics and Therapy
Authors: JK Biswas, R Pradhan, N Mondal, S Ballav, M Rana
Citation: 1

Conclusion

Dr. Nitesh Mondal exemplifies engineering excellence through education, research, and professional service. His career unites theoretical depth, practical innovation, and teaching leadership within engineering. By advancing mechanical engineering systems, optimizing fluid dynamics, and contributing to computational modeling, he provides lasting value to both academic and industrial domains. His engineering journey reflects a commitment to problem-solving, interdisciplinary collaboration, and continuous improvement in technology. Through his engineering expertise, publications, and mentorship, he contributes to shaping future engineers and strengthening global knowledge networks. In conclusion, Dr. Nitesh Mondal remains a dedicated contributor to advancing modern engineering solutions, fostering innovation, and elevating the standards of scientific and educational practice in engineering.

Ms. Zahra Sabet-Bokati | Engineering | Best Researcher Award

Ms. Zahra Sabet-Bokati | Engineering | Best Researcher Award

Researcher at University of Shiraz | Iran

Ms. Zahra Sabet-Bokati is a dedicated professional in Materials Engineering with expertise in polymeric nanofibers, biomedical Engineering, and tissue Engineering. Her academic and research journey reflects a strong focus on developing advanced Engineering solutions through synthesis, fabrication, and material characterization. She integrates Engineering concepts with practical applications, especially in the fields of electrospinning and scaffold design. Her contribution to Engineering publications highlights innovation and problem-solving skills within the Engineering community. By combining scientific rigor with Engineering creativity, she has positioned herself as a valuable contributor to the advancement of materials Engineering, constantly striving to bridge the gap between theoretical research and practical Engineering applications that impact health and industrial progress in the field of modern Engineering.

Professional Profile

Google Scholar Profile 

Education 

Ms. Zahra Sabet-Bokati has pursued her academic career with a strong focus on Materials Engineering at Shiraz University. Her bachelor’s and master’s degrees in Materials Engineering have been centered around biomedical and tissue Engineering research, especially using electrospinning techniques. Her master’s thesis explored the impact of reduced graphene oxide on polycaprolactone-polypyrrole scaffolds, enhancing Engineering knowledge in composite structures and polymeric systems. This educational background highlights her Engineering foundation, preparing her to tackle complex Engineering challenges. Throughout her studies, Ms. Zahra Sabet-Bokati engaged deeply in Engineering problem-solving, experimental design, and material synthesis. Her solid Engineering education ensures she is equipped to translate fundamental concepts into innovative Engineering solutions with significant impact on applied Engineering research.

Experience 

Ms. Zahra Sabet-Bokati brings valuable Engineering professional experience through academic projects, research collaborations, and industrial practice in Materials Engineering. Her work includes synthesizing nanoparticles, electrospinning conductive scaffolds, and participating in corrosion inhibitor development projects. These roles demanded Engineering problem-solving, precision, and adaptability in diverse Engineering environments. She worked with Arca Asia Industries Research Company, applying Engineering methodologies to nanoparticle synthesis, showing her ability to transfer Engineering knowledge into industrial contexts. Her teamwork in national elite projects demonstrated Engineering leadership, communication, and innovation. This combination of academic and industrial Engineering experience enables her to navigate challenges and develop high-impact Engineering solutions across biomedical, corrosion, and material design Engineering sectors.

Research Interest 

Ms. Zahra Sabet-Bokati’s Engineering research interests include polymeric nanofibers, electrospinning technologies, and conductive polymer-based scaffolds for biomedical Engineering applications. Her focus on scaffold fabrication connects advanced Materials Engineering with health-related Engineering innovations. She explores ways to enhance physical, chemical, and mechanical properties of polymers through Engineering-driven approaches. Interests in electrically conductive polymers and anticorrosion coatings demonstrate her versatility within Engineering research fields, combining medical and industrial Engineering relevance. She aims to contribute to next-generation biomaterials and functional coatings through Engineering design, synthesis, and characterization. By bridging theoretical and experimental Engineering methods, Ms. Zahra Sabet-Bokati seeks to create sustainable, high-performance solutions for real-world Engineering challenges.

Award and Honor

Ms. Zahra Sabet-Bokati has earned multiple Engineering-related awards recognizing her academic and research excellence in Materials Engineering. She ranked among the top students in her Engineering classes and received merit-based admission into advanced Engineering programs. Her master’s thesis was awarded Best Thesis in Materials Engineering, acknowledging the quality, originality, and impact of her Engineering research. Such achievements illustrate her consistent pursuit of Engineering advancement and professional distinction. Recognition from her peers and institutions underscores her capability to produce Engineering innovations that address modern technological needs. These honors reinforce her reputation as an emerging leader in Materials Engineering, inspiring further contributions to scientific and applied Engineering domains globally.

Research Skill

Ms. Zahra Sabet-Bokati possesses advanced Engineering research skills spanning synthesis, fabrication, and analysis of materials for biomedical and industrial Engineering use. She is proficient in electrospinning, nanoparticle synthesis, and mechanical testing, all crucial in modern Engineering laboratories. Her analytical expertise includes SEM, FTIR, Raman spectroscopy, and other Engineering characterization techniques. She integrates computational and statistical software, including Matlab and Design of Expert, to optimize Engineering experiments and analyze data effectively. These Engineering skills allow her to design innovative solutions, validate material properties, and contribute meaningfully to Engineering advancements. Combining theoretical understanding with hands-on Engineering abilities ensures her readiness to tackle complex research questions and develop impactful Engineering outcomes.

Publication Top Notes 

Title: Anticorrosion shape memory-assisted self-healing coatings: A review

Journal: Progress in Organic Coatings

Author: Z Sabet-Bokati, K Sabet-Bokati, Z Russell, K Morshed-Behbahani, ...

Year: 2024

Title: Study of the synergistic effect of electrospun fiber structure and PPy particles on the electrical conductivity and tensile strength of PCL-PVA-PPy fibers

Journal: Results in Engineering

Author: Z Sabet-Bokati, SM Zebarjad

Year: 2025

Title: Investigating the effect of poly-pyrrole and electrospinning parameters on polycaprolactone scaffold properties

Journal: Metallurgical Engineering

Author: SM Zebarjad, Z Sabet Bokati

Year: 2025

Conclusion

Ms. Zahra Sabet-Bokati exemplifies dedication, innovation, and expertise in the field of Materials Engineering. Through education, professional engagements, and impactful research, she advances Engineering knowledge with practical biomedical and industrial relevance. Her consistent focus on Engineering excellence ensures contributions that merge creativity with technical depth. The combination of academic achievement, recognized awards, and Engineering publications highlights her capacity to address modern challenges with innovative Engineering solutions. As Engineering continues to evolve globally, Ms. Zahra Sabet-Bokati stands poised to influence the field, fostering breakthroughs that benefit society, industry, and science through persistent Engineering inquiry, collaborative innovation, and visionary application of advanced Engineering principles.

Prof. Jijun Lu | Engineering | Best Researcher Award

Prof. Jijun Lu | Engineering | Best Researcher Award

Prof at Kunming University of Science and Technology | China

Prof. Jijun Lu is a distinguished figure in Engineering, recognized for his innovative contributions to metallurgical Engineering, chemical Engineering, and energy material Engineering. His work integrates theoretical Engineering principles with practical solutions in silicon-based energy materials, photovoltaic recycling, and key metal metallurgy. As a Professor at Kunming University of Science and Technology, he combines Engineering research with impactful teaching. Prof. Jijun Lu has led numerous national and provincial Engineering projects, transferring technologies worth millions. With more than 40 peer-reviewed publications, including high-impact Engineering journals, his research continues to advance green and low-carbon metallurgy. He has received multiple awards for his Engineering excellence, making him a leader in modern metallurgical and energy materials Engineering worldwide.

Professional Profile

Scopus Profile | ORCID Profile 

Education 

Prof. Jijun Lu’s academic journey in Engineering reflects a commitment to excellence across multiple Engineering disciplines. He earned his Bachelor of Engineering in metallurgical Engineering at Kunming University of Science and Technology, where he developed strong foundational Engineering skills. He further advanced his expertise by completing a Doctor of Engineering degree at the Institute of Process Engineering, Chinese Academy of Sciences, specializing in chemical Engineering. His educational background emphasizes deep theoretical Engineering knowledge combined with practical applications in energy and metallurgy. Through rigorous academic training, he built a platform for innovative Engineering research. His education in Engineering prepared him to bridge traditional metallurgical Engineering with emerging challenges in sustainable and energy-efficient Engineering processes.

Experience 

Prof. Jijun Lu has accumulated extensive professional experience in Engineering, contributing to both academic and industrial Engineering development. At Kunming University of Science and Technology, he serves as a Professor in the College of Metallurgy and Energy Engineering, where he leads interdisciplinary Engineering research. He manages projects in silicon-based energy material preparation, photovoltaic waste recycling, and metal metallurgy, demonstrating practical Engineering leadership. His collaboration with industries brings advanced Engineering technologies into real-world production, particularly in high-end lithium-silicon-carbon anode materials. Prof. Jijun Lu’s role integrates Engineering education, research, and innovation, guiding students and researchers in advanced Engineering methodologies. His work reflects a unique combination of scientific rigor and applied Engineering innovation, supporting sustainable technological progress.

Research Interest 

Prof. Jijun Lu’s research interests revolve around advanced Engineering challenges in energy and metallurgy. He focuses on key metal metallurgy, secondary resource recycling, and the preparation of silicon-based energy materials, combining core Engineering principles with environmental responsibility. His Engineering studies target efficiency improvements, resource recovery, and low-carbon metallurgical processes. Prof. Jijun Lu is especially interested in how Engineering approaches can enhance photovoltaic recycling and energy storage solutions, aligning with global sustainability goals. His work in Engineering also emphasizes innovation in battery technologies and advanced anode material design. By bridging metallurgy and energy material Engineering, he provides solutions for next-generation technologies, ensuring Engineering remains at the forefront of industrial transformation and ecological advancement.

Award and Honor

Prof. Jijun Lu has received numerous awards that highlight his Engineering excellence, leadership, and innovation in metallurgical and energy-related Engineering. Recognized as a “Young Talent” in Yunnan Province, he earned prestigious awards including the Outstanding Young Talent Award for Green and Low-Carbon Metallurgy, Dean’s Excellence Award, and multiple national-level Engineering competition prizes. His guidance has led students to secure top positions in national and international Engineering competitions, demonstrating his mentorship in Engineering education. His recognition reflects consistent contributions to the Engineering community, enhancing the understanding and application of sustainable metallurgy and energy material Engineering. These honors affirm his role as a leading figure in developing future-focused Engineering solutions in both academia and industry.

Research Skill

Prof. Jijun Lu possesses outstanding research skills in Engineering, blending theoretical insights with practical applications across diverse Engineering disciplines. His expertise includes designing efficient metallurgical Engineering processes, developing silicon-based energy materials, and innovating photovoltaic recycling methods. He applies advanced Engineering tools, chemical Engineering modeling, and experimental techniques to address critical challenges in low-carbon metallurgy. His ability to secure and lead national-level Engineering projects highlights his strategic research planning. By publishing extensively in high-impact Engineering journals, he showcases strong analytical, technical, and collaborative skills essential to Engineering progress. Prof. Jijun Lu’s research abilities contribute not only to academic knowledge but also to transformative Engineering technologies that support sustainable industrial evolution.

Publication Top Notes 

Title: Cover Image, Volume 7, Number 7, July 2025
Journal: Carbon Energy
Authors: Liao Shen; Shaoyuan Li; Yanfeng Wang; Jijun Lu; Fengshuo Xi; Huaping Zhao; Zhongqiu Tong; Wenhui Ma; Yong Lei
Year: 2025

Title: Upcycling Photovoltaic Silicon Waste Into Cost‐Effectiveness Si/C Anode Materials
Journal: Carbon Energy
Authors: Liao Shen; Shaoyuan Li; Yanfeng Wang; Jijun Lu; Fengshuo Xi; Huaping Zhao; Zhongqiu Tong; Wenhui Ma; Yong Lei
Year: 2025

Title: Flash separation and recovery of each component from waste photovoltaic modules
Journal: Chemical Engineering Journal
Authors: Jiaxing Zhang; Xinjie Bai; Jijun Lu; Liao Shen; Yuelong Yu; Fengshuo Xi; Xiuhua Chen; Wenhui Ma; Shaoyuan Li
Year: 2025

Title: Full Component Cycling of Spent CIGS Solar Cells by Transient Pressure Differential
Journal: Advanced Functional Materials
Authors: Haochen Bao; Jijun Lu; Yuelong Yu; Fengshuo Xi; Xiuhua Chen; Wenhui Ma; Shaoyuan Li
Year: 2025

Title: Large-scale preparation of amorphous silicon materials for high-stability lithium-ion battery anodes
Journal: Journal of Power Sources
Authors: Jijun Lu; Shaoyuan Li; Liao Shen; Yanfeng Wang; Kuixian Wei; Yuelong Yu; Fengshuo Xi; Wenhui Ma; Zhi Wang
Year: 2025

Title: Recent advances in interface engineering of silicon anodes for enhanced lithium-ion battery performance
Journal: Energy Storage Materials
Authors: Liang Wang; Jie Yu; Shaoyuan Li; Fengshuo Xi; Wenhui Ma; Kuixian Wei; Jijun Lu; Zhongqiu Tong; Bao Liu; Bin Luo
Year: 2024

Conclusion

Prof. Jijun Lu represents the ideal integration of Engineering scholarship, innovation, and practical impact. His work reflects deep Engineering expertise, addressing global challenges in sustainable metallurgy and energy materials. By combining academic rigor with applied Engineering solutions, he has advanced both knowledge and industry practices. His leadership in Engineering projects, mentorship of students, and impactful publications make him a key contributor to the future of Engineering science. The numerous honors and technology transfers under his guidance further affirm his influence in shaping modern Engineering approaches. Through dedication, vision, and technical mastery, Prof. Jijun Lu continues to drive Engineering forward, ensuring it remains central to technological advancement and environmental sustainability.