Tarek Naadia | Civil engineering materials | Industry Impact Award

Dr. Tarek Naadia | Civil engineering materials | Industry Impact Award

Dr. Tarek Naadia, Ecole Polytechnique d’Architecture et d’Urbanisme (EPAU), Algeria.

Dr. Tarek Naadia, a prominent scholar at the Ecole Polytechnique d’Architecture et d’Urbanisme (EPAU) in Algeria, has carved a significant place in the academic and professional spheres of architecture and urbanism. His journey began with a strong academic foundation in architectural theory and urban design, eventually evolving into a distinguished teaching and research career. With a focus on sustainable architecture, urban morphology, and heritage-sensitive design, Dr. Naadia’s work bridges traditional values and contemporary challenges. His influence is evident in both the classroom and the urban landscape, as he continues to mentor students and contribute to public and academic discourse on urban planning and design.

 

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🎓 Early Academic Pursuits

Dr. Tarek Naadia began his academic journey with a profound interest in architecture and urbanism, fields that demand both creative vision and analytical precision. His formative years were marked by rigorous training in design principles, environmental planning, and the socio-cultural aspects of urban spaces. His commitment to academic excellence led him to pursue higher education at prestigious institutions, where he developed a strong foundation in architectural theory and urban design methodology. These early academic experiences shaped his research direction and laid the groundwork for his future as a scholar and educator.

🏛️ Professional Endeavors

As a dedicated faculty member at the Ecole Polytechnique d’Architecture et d’Urbanisme (EPAU) in Algeria, Dr. Naadia has played a vital role in mentoring the next generation of architects and urban planners. His professional career has been characterized by a balance between academic instruction, applied research, and collaboration with governmental and urban development bodies. He has been actively involved in curriculum development, cross-disciplinary workshops, and strategic planning initiatives, all of which underscore his commitment to enhancing architectural education and practice in Algeria.

🧠 Contributions and Research Focus

Dr. Naadia’s research is deeply rooted in the intersection of sustainable architecture and urban morphology. He has explored themes such as adaptive reuse of urban space, vernacular architecture, and the socio-environmental impacts of urban expansion. His scholarly contributions often address the challenges of modernity within historic urban fabrics, advocating for a harmonious blend of tradition and innovation. Through his analytical frameworks, he contributes to rethinking spatial organization in North African cities, drawing attention to climatic responsiveness, community engagement, and architectural identity.

🏆 Accolades and Recognition

Throughout his academic and professional career, Dr. Naadia has been recognized for his impactful research and dedication to the field. He has received commendations for his publications and conference presentations, both nationally and internationally. These accolades reflect not only his scholarly excellence but also his ability to contextualize architectural issues within the broader socio-cultural and environmental landscapes. His insights have earned him a respected position among Algerian architectural scholars and practitioners.

🌍 Impact and Influence

Dr. Naadia’s work extends beyond academic circles into real-world urban challenges faced by Algerian cities and the broader Maghreb region. His critical analyses and design propositions have influenced public discourse on urban regeneration, heritage conservation, and sustainable development. By bridging theoretical knowledge and practical applications, he has contributed to more inclusive, resilient, and culturally sensitive urban environments. His teachings continue to inspire students to engage with architecture not only as a profession but as a tool for societal transformation.

🧱 Legacy and Future Contributions

Looking ahead, Dr. Naadia envisions a continued dialogue between traditional architectural practices and contemporary urban needs. His legacy lies in his holistic approach to urbanism—one that respects the past while innovating for the future. He aims to expand his research into digital tools for urban analysis and climate-responsive design, positioning his work within global conversations about smart cities and ecological architecture. Through future collaborations and publications, he seeks to shape policies and pedagogies that support sustainable urban futures.

🏙️ Vision in Urban Design Research

At the core of Dr. Naadia’s scholarly identity is a visionary approach to urban design. He perceives cities as dynamic organisms shaped by culture, climate, and community. His research continues to interrogate how built environments respond to human needs, ecological pressures, and technological advancements. By advocating for context-aware urbanism, he contributes to a more equitable and adaptive understanding of city-making. His vision is one of inclusive growth, architectural integrity, and environmental stewardship.

Publication

  • Title: Rheological and mechanical optimization of a steel fiber reinforced self-compacting concrete using the design of experiments method
    Authors: D. Gueciouer, G. Youcef, N. Tarek
    Year: 2022

 

  • Title: Development of a measuring procedure of rheological behavior for self compacting concrete
    Authors: T. Naadia, Y. Ghernouti, D. Gueciouer
    Year: 2020

 

 

  • Title: Corrélations rhéologie-compacité-granularité des bétons autoplaçants
    Author: T. Naadia
    Year: 2014

 

  • Title: Optimization of Steel Fiber-Reinforced Self-Compacting Concrete with Tuff Powder
    Authors: T. Naadia, D. Gueciouer
    Year: 2025

 

  • Title: Formulation and characterization of steel fiber reinforced self-compacting concrete (SFRSCC) based on marble powder
    Authors: T. Naadia, D. Gueciouer, Y. Ghernouti
    Year: 2025

 

  • Title: Effect of the aggregates size on the rheological behaviour of the self compacting concrete
    Authors: T. Naadia, F. Kharchi
    Year: 2013

 

🏁 Conclusion

Dr. Naadia’s career stands as a testament to the power of thoughtful, research-driven architecture in shaping better urban futures. His interdisciplinary approach, grounded in cultural sensitivity and sustainability, continues to guide new generations of architects and planners in Algeria and beyond. As he looks toward the future, Dr. Naadia is poised to make further contributions that not only enrich academic understanding but also inform real-world solutions for more inclusive, resilient, and livable cities.

Yunqi Zhang | Array Antenna | Best Researcher Award

Assoc. Prof. Dr. Yunqi Zhang | Array Antenna | Best Researcher Award

Assoc. Prof. Dr.Yunqi Zhang, Xi’an University of Posts & Telecommunications, China.

Yunqi Zhang is an accomplished Associate Professor and master’s supervisor specializing in Electronic Science and Technology at Xi’an University of Posts and Telecommunications. With a solid academic foundation in Electronic Information Engineering and a doctoral degree in Electromagnetic Field and Wireless Technology, Zhang has built a distinguished career. Zhang’s expertise spans array antennas, vortex electromagnetic waves, intelligent metasurfaces, and reflective array antennas. Significant contributions include leading innovative projects like 5G antenna decoupling technology and advancing the understanding of acoustic wave propagation.

 

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🌟 Early Academic Pursuits

Yunqi Zhang embarked on a journey in the realm of electronic sciences with a solid foundation in Electronic Information Engineering, earning a bachelor’s degree from Xi’an University of Electronic Science and Technology in 2009. Driven by a passion for innovation, Zhang pursued advanced studies and obtained a doctoral degree in Electromagnetic Field and Wireless Technology from the same institution in 2015. These formative years established a robust academic base, equipping Zhang with the expertise to navigate the evolving field of electromagnetic and communication technologies.

📡 Professional Endeavors

Currently serving as an Associate Professor and master’s supervisor at Xi’an University of Posts and Telecommunications, Yunqi Zhang is an integral part of the School of Electronic Engineering. Zhang’s dedication to teaching and mentoring young minds has been instrumental in nurturing future innovators in electronic sciences. Engaging in interdisciplinary projects and fostering collaboration, Zhang consistently bridges theoretical insights with practical applications, inspiring students to excel in the competitive domain of electronic and wireless technology.

🔬 Contributions to Cutting-Edge Research

Zhang’s research pursuits span an array of innovative topics, including array antennas, vortex electromagnetic waves, intelligent metasurfaces, and reflective array antennas. Leading projects such as the 5G Mobile Communication Antenna Decoupling Technology, Zhang has unveiled groundbreaking insights into graphene-based antenna designs. Another notable contribution includes advancing the understanding of acoustic wave propagation phenomena, a project supported by the National Natural Science Foundation of China. Zhang’s research underscores a commitment to expanding the frontiers of wireless communication and signal processing.

🏆 Accolades and Recognition

Yunqi Zhang’s dedication to excellence has garnered acclaim in both academic and professional circles. With over 10 SCI-indexed publications in internationally renowned journals, Zhang’s work has significantly enriched the global discourse on electromagnetic technologies. Recognized for impactful research and contributions, Zhang has established a reputation as a thought leader in electronic and wireless technologies, earning respect and accolades within the scientific community.

🌍 Impact and Influence

Through pioneering research and thoughtful mentoring, Zhang has made a lasting impact on academia and industry. By fostering innovation and leading cross-disciplinary projects, Zhang’s work addresses contemporary challenges in communication and antenna technologies, contributing to societal advancements. The insights derived from Zhang’s research continue to influence emerging technologies, laying a foundation for next-generation solutions in telecommunications.

🧬 Legacy of Innovation

Zhang’s legacy is defined by a relentless pursuit of excellence and a commitment to advancing the field of electronic sciences. By mentoring students and engaging in forward-thinking projects, Zhang ensures the continuation of innovative research that resonates across disciplines. The legacy also lies in the transformative impact Zhang’s research has on modern communication systems, reinforcing the importance of interdisciplinary approaches in solving real-world challenges.

 

📚 Publications

  • Mode Reconfigurable OAM Helical Array Antenna for Higher Mode Generation
    Authors: Zhang, Y., Yang, R., Li, X., Zhang, X., Wang, S.
    Year: 2024

 

  • Wideband Simultaneous Dual Circularly Polarized Phased Array Subarray with Scalable Characteristics for Satellite Communications
    Authors: Zhang, Y., Chen, J., Li, X., Song, X., Zhou, W.
    Year: 2024

 

  • Wideband Low-Profile Fabry-Perot Cavity Antenna with Metasurface
    Authors: Song, X., Dong, A., Li, X., Yang, H., Li, Y.
    Year: 2024

 

  • Enhanced Mode Conversion and Out-of-Band Rejection in Double-Side Composite SSPPs Structure
    Authors: Yang, H., Xiao, Y., Li, X., Fang, Y., Wang, S.
    Year: 2024

 

  • Gain-Enhanced and Mechanical Reconfigurable Slot Antenna with Metasurface
    Authors: Song, X., Dong, A., Li, X., Li, Y., Yang, H.
    Year: 2023

 

  • Circular Monopole Filtering Antenna with Improved Sideband Selectivity and In-Band Impedance Using Circular-Stub-Load Resonator
    Authors: Yang, H., Zhang, J., Li, X., Song, X., Shi, X.
    Year: 2023

 

  • A Compact Circularly Polarized Crossed Dipole Antenna with Wide Bandwidth Using Split Ring Resonator and Parasitic Patches
    Authors: Yang, H., Guo, Z., Li, X., Song, X., Wang, S.
    Year: 2023

 

  • Design of a Miniatured, Electromagnetic Quasi-Yagi Antenna with Circularly Polarized Characteristics
    Authors: Zhang, Y., Liu, L., Sun, Z., Che, J., Li, H.
    Year: 2023

 

  • Analysis and Design of Broadband OAM Array Antenna
    Authors: Zhang, Y., Zhao, S., Li, X., Wang, L.
    Year: 2023

 

  • A Broadband Elliptical Microstrip Antenna with Gain-Filtering Response
    Authors: Du, X., Li, Y., Li, X., Zhang, Y.
    Year: 2023

 

Conclusion

Through a commitment to excellence in research and teaching, Yunqi Zhang has significantly influenced the fields of electronic and wireless communication. By bridging theoretical insights with practical applications, Zhang’s work not only addresses current technological challenges but also inspires future generations of scientists and engineers. With a forward-looking vision for innovation and collaboration, Zhang’s contributions promise to drive advancements in telecommunications and solidify a lasting legacy in the field.

 

 

Xin He | Nanomaterials and Nanodevices | Best Researcher Award 

Dr. Xin He | Nanomaterials and Nanodevices | Best Researcher Award

Dr. Xin He, Yunnan Normal University, China.

Xin he, serving as a teaching secretary at yunnan normal university, has made significant contributions to the field of low-dimensional materials and their applications in electronic and optoelectronic devices. with a strong academic foundation and a research focus on first-principles calculations combined with the non-equilibrium green’s function, xin explores material behaviors at nanoscale levels. balancing professional endeavors with impactful research, xin he continues to influence technological advancements while fostering innovation and academic growth within the university environment.

 

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✨ Early academic pursuits

Xin he’s academic journey began with a profound curiosity for materials science and its applications in technology. during their early studies, xin developed a keen interest in understanding the fundamental properties of materials, driven by a solid foundation in physics and engineering. this passion led to a commitment to exploring how materials interact at the atomic level, setting the stage for future research endeavors.

🔬 Professional endeavors

As the teaching secretary at yunnan normal university, xin he plays an integral role in academic administration while actively contributing to research. balancing organizational responsibilities and academic pursuits, xin has created a unique space where administration supports innovation and student growth. the role highlights xin’s dedication to both education and research excellence.

💡 Contributions and research focus

Xin he’s primary research lies in exploring low-dimensional materials and their applications in electronic and optoelectronic devices. using first-principles calculations combined with the non-equilibrium green’s function, xin investigates the behavior of materials at nanoscale dimensions. these groundbreaking studies aim to enhance electronic device efficiency and unlock new opportunities in optoelectronic technologies, addressing key challenges in the technological field.

🏆 Accolades and recognition

Through consistent dedication to research, xin has earned recognition for significant contributions to material science and device engineering. while accolades often remain understated, xin’s meticulous work and research methodology have received appreciation within academic circles and among peers at yunnan normal university.

🌍 Impact and influence

Xin he’s work has laid a strong foundation for understanding low-dimensional materials and their real-world applications. by contributing insights into material behavior in advanced devices, xin’s research influences technological advancements that bridge the gap between theory and practical innovation. this research not only impacts the scientific community but also inspires students and aspiring researchers to delve into material sciences.

🚀 Legacy and future contributions

looking ahead, xin aims to continue exploring emerging materials and technologies, driving advancements in electronic and optoelectronic devices. xin’s focus on low-dimensional materials holds immense promise for future breakthroughs, fostering innovations that could revolutionize industries and reshape how technology interacts with the environment.

📚 Commitment to education and research

At yunnan normal university, xin he exemplifies a harmonious balance between research and teaching administration. by encouraging students to engage in research-driven learning and upholding institutional excellence, xin ensures the future generation benefits from a supportive and inspiring academic environment.

📚 Publications

  • Tunable interface properties of Janus MoSi₂N₂P₂/graphene van der Waals heterostructure: Implications for electronic and optoelectronic devices
    Authors: Mengshi Dai, Lianmeng Yu, Xiaobo Feng, Qianjin Wang, Xin He
    Year: 2024

 

  • Achieving real Ohmic contact by the dual protection of outer layer atoms and surface functionalization in 2D metal Mxenes/MoSi₂N₄ heterostructures
    Authors: X. He, Wenzhong Li, Z. Gao, Z. Zhang, Yao He
    Year: 2023

 

  • Simulation studies on robust contacts in V₂CT₂/MoSi₂N₄ (T═O, F, OH) van der Waals heterojunction nanostructures: Implications for optoelectronic devices
    Authors: Xin He, Zhen Gao, Zhenhua Zhang, Kai Xiong, Yao He
    Year: 2023

 

  • Electronic and optical properties and device applications for antimonene/WS₂ van der Waals heterostructure
    Authors: X. He, X.Q. Deng, L. Sun, Z.H. Zhang, Z.Q. Fan
    Year: 2022

 

  • Geometry, induced magnetism and modified electronic behaviors for magnetic atom adsorption on antimonene nanotubes
    Authors: X. He, Zhiqiang Fan, Z. Zhang
    Year: 2020

 

Conclusion

Xin he’s work exemplifies a commitment to advancing material science through groundbreaking research and practical applications. by exploring the untapped potential of low-dimensional materials, xin not only addresses modern technological challenges but also inspires future researchers. with a legacy of dedication to both education and scientific discovery, xin he stands as a pillar of academic excellence, shaping the future of electronic and optoelectronic device innovation.

 

SHAOQUAN WANG | Road Engineering | Best Researcher Award

Dr.SHAOQUAN WANG | Road Engineering | Best Researcher Award

Dr. SHAOQUAN WANG Southeast University China.

Dr. Shaoquan Wang, a PhD graduate in Engineering from Southeast University, has dedicated over 12 years to advanced studies in road engineering, combining expertise in materials science and chemical engineering. His research focuses on innovative solutions for road surface repair, particularly the development of a two-way shape memory pavement crack repair material. This technology addresses critical challenges in the field, such as the coordination of repair materials with pavement cracks and enhancing durability under varying environmental conditions.

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Academic and Professional Background 📚

Dr. Shaoquan Wang holds a PhD in Engineering from Southeast University. Over 12 years of study, he has pursued an in-depth and systematic approach to road engineering. His cross-disciplinary focus has expanded into materials and the chemical industry, keeping him well-versed in cutting-edge developments and trends, with potential for new research directions.

Research and Innovations 🔍

Completed/Ongoing Research Projects:National Natural Science Foundation of China (51878168) (Completed).Scientific Research Foundation of Graduate School of Southeast University (YBPY2159) (Completed).

Contributions 🌟

Dr. Wang is pioneering a two-way shape memory pavement crack repair material that intelligently senses temperature changes. This innovation addresses deformation coordination between repair materials and pavement cracks, enhancing durability during asphalt pavement expansion and contraction. His work offers a novel solution to longstanding issues in pavement crack repair.

📚 Publications

  • Title: A new pavement crack repair sealant with two-way shape memory effect
    Author: Shaoquan Wang et al.
    Year: 2024

 

  • Title: Effects of Periodically Changing Temperatures on the Bond Interface between Crack Sealant and Repaired Pavement
    Author: Shaoquan Wang et al.
    Year: 2024

 

  • Title: Development of a modified bond test for hot applied crack sealants by using hot-cold cycles
    Author: Shaoquan Wang et al.
    Year: 2023

 

  • Title: Dynamic behavior of crack sealant bonding interface in the asphalt pavement crack repair structure under moving vehicle load
    Author: Shaoquan Wang et al.
    Year: 2023

 

  • Title: Stiffening effect of filler on asphalt mastic composite: A new insight based on nearest surface function
    Author: Yanshun Jia et al. (including Shaoquan Wang)
    Year: 2022

 

  • Title: Utilization of iron ore tailing as an alternative mineral filler in asphalt mastic: High-temperature performance and environmental aspects
    Author: Ziyao Wei et al. (including Shaoquan Wang)
    Year: 2022

 

  • Title: Laboratory performance of asphalt mixture with waste tyre rubber and APAO modified asphalt binder
    Author: Kezhen Yan et al. (including Shaoquan Wang)
    Year: 2022

 

  • Title: Evaluation of the Rutting Performance of the Field Specimen Using the Hamburg Wheel‐Tracking Test and Dynamic Modulus Test
    Author: Xiongwei Dai et al. (including Shaoquan Wang)
    Year: 2020

Conclusion

Dr. Shaoquan Wang’s pioneering research in intelligent pavement materials represents a substantial advancement in road engineering. His interdisciplinary approach not only tackles long-standing issues in pavement crack repair but also opens new avenues for further exploration in material science. Given his impactful contributions, extensive experience, and innovative research, Dr. Wang is highly deserving of the Best Researcher Award. His work promises to enhance infrastructure sustainability and performance, making him a valuable asset to both academia and industry.