Prof. Fanxiu Chen | Intenational Material Scientist Awards | Best Researcher Award

Prof. Fanxiu Chen | Intenational Material Scientist Awards | Best Researcher Award

Qingdao University of Technology,China

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Scopus 

Early Academic Pursuits ✨

Fanxiu Chen’s journey in academia began with a strong foundation in mechanical engineering, where she cultivated a deep interest in experimental mechanics and material behavior analysis. Her early academic years were characterized by a curiosity for understanding the intrinsic properties of materials and their response to external forces. She pursued her studies with an unwavering commitment to scientific discovery, delving into the complexities of optomechanical methods and their applications. Recognizing the need for advanced measurement techniques, she dedicated herself to exploring novel methodologies for analyzing mechanical properties, setting the stage for her future contributions to the field.

Professional Endeavors 👩‍🎓

As a professor and doctoral supervisor, Fanxiu Chen has played a pivotal role in advancing experimental mechanics and testing technology. Her professional journey has been marked by active participation in esteemed committees, including the Professional Committee of Experimental Mechanics of the Chinese Mechanical Society and the Professional Committee of Testing Technology of the Production Engineering Branch of the Chinese Mechanical Engineering Society. She has also been recognized as a young expert of Taishan Scholars in Shandong Province. Her work has bridged the gap between theoretical research and practical applications, particularly in the safety assessment and monitoring of major infrastructure projects in coastal environments.

Her research focuses on developing high-precision optical non-contact detection technologies to enhance the reliability of concrete infrastructure. By integrating modern optomechanical methods with structural health monitoring, she has provided groundbreaking insights into material degradation, damage evaluation, and safety diagnostics. Through collaboration with interdisciplinary teams, she has successfully translated her findings into real-world applications, benefiting large-scale engineering projects across the globe.

Contributions and Research Focus 🔬

At the core of Fanxiu Chen’s research lies a dedication to improving the durability and longevity of reinforced concrete structures, particularly those exposed to harsh coastal environments. She has led systematic investigations into the microstructural evolution of concrete, analyzing how factors such as multi-ion coupling, steel corrosion, and environmental stressors influence material integrity. Her work has provided a scientific basis for predicting the service life of reinforced concrete structures, offering innovative solutions for mitigating structural degradation.

One of her most notable contributions is the development of a seamless multi-camera 3D-DIC method, which allows for high-precision real-time monitoring of structural performance. Additionally, she has pioneered the use of an underwater non-contact camera array for rapid assessment of damage in submerged structures. These technological advancements have revolutionized the way engineers approach infrastructure maintenance, enabling early detection of vulnerabilities and informed decision-making.

Her research has also yielded significant advancements in steel corrosion analysis. By establishing theoretical models for corrosion expansion forces under various environmental conditions, she has shed light on the relationship between corrosion-induced stress and surface strain in concrete. Her findings have been widely recognized, including the selection of her work as a highly cited ESI paper. Furthermore, her contributions to reducing steel reinforcement expansion forces have had a tangible impact on enhancing structural resilience.

Accolades and Recognition 🏆

Fanxiu Chen’s exemplary contributions have earned her numerous prestigious accolades, solidifying her reputation as a leading researcher in her field. She was among the first to be selected for the “Shandong Provincial Plan for the Introduction of Young Creative Talents in Colleges and Universities” in 2019. Her team’s research has resulted in the authorization of 10 domestic and international patents and the publication of three academic monographs and textbooks.

Her groundbreaking work has not only garnered recognition in academia but also in industry. The high-precision optical non-contact detection technology she developed has been successfully commercialized in partnership with major enterprises, including Dantec in Germany and leading companies in Shenzhen and Nanjing. The widespread adoption of her technology in over 20 countries, including the United Kingdom, the United States, and Canada, attests to the global impact of her innovations.

Her influence extends beyond research, as she has played a crucial role in mentoring the next generation of engineers and researchers. Under her guidance, her students have achieved remarkable success, winning national scholarships, provincial excellence awards, and recognition for innovation. Her dedication to fostering young talent has solidified her legacy as both a scholar and a mentor.

Impact and Influence 🌍

The impact of Fanxiu Chen’s research is far-reaching, with practical applications in critical infrastructure projects such as Qingdao Metro, Qinglian Railway, and Jiaozhou Bay Subsea Tunnel. Her contributions have been instrumental in ensuring the structural integrity of these projects, leading to prestigious awards such as the Luban Award and the National Quality Engineering Award.

Beyond engineering applications, her work has contributed significantly to the field of experimental mechanics, providing a deeper understanding of material behavior under complex environmental conditions. Her research has influenced policy-making in infrastructure safety, guiding best practices for maintenance and rehabilitation strategies. The economic and social benefits of her contributions are evident, with newly added sales revenue from her industrialized technologies surpassing 1.2 billion yuan in the past two years alone.

Legacy and Future Contributions 🌟

Looking ahead, Fanxiu Chen remains dedicated to pushing the boundaries of material science and structural health monitoring. Her future endeavors include further refining high-precision monitoring technologies and expanding the application of artificial intelligence in predictive maintenance. She envisions developing an intelligent, data-driven platform for real-time infrastructure monitoring, integrating machine learning algorithms to enhance predictive capabilities.

As a trailblazer in her field, she continues to inspire future researchers and engineers, advocating for a proactive approach to structural safety. Her unwavering commitment to scientific exploration, technological innovation, and knowledge dissemination ensures that her contributions will shape the landscape of engineering and material science for generations to come.

📝Notable Publications

 Effects of water-cement ratio and particle diameter on the mechanical properties of cement paste particles

Author: Z. Qiu, Ziming; F. Chen, Fanxiu; Y. Yu, Yang; X. Wang, Xiao; Y. Wang, Yuan
Journal: Optics and Lasers in Engineering
Year: 2025

Structural properties and mechanical behavior of three-dimensional cylindrical particle-like systems under in situ loading

Author: Y. Gu, Yanji; F. Chen, Fanxiu; Y. Yu, Yang; J. Liu, Jinglan; Z. Qiu, Ziming
Journal: Powder Technology
Year: 2025

Contact force calculation and evolution analysis of granular systems based on micro-CT experiment

Author: X. Wang, Xiao; S. Song, Shiqi; Z. Ping, Zijian; X. Shang, Xianyi; F. Chen, Fanxiu
Journal: Wuli Xuebao/Acta Physica Sinica
Year: 2025

Quasi-static modeling of a cable-driven continuum manipulator considering non-smooth cable-hole friction and experimental verification

Author: S. Zhang, Shucui; J. Zhao, Jiayuan; X. Zhang, Xingang; H. Peng, Haijun; C. Liu, Caishan
Journal: Mechanism and Machine Theory
Year: 2024

Dr. Anna Szewczyk | molecular biology and cell signalling | Best Researcher Award

Dr. Anna Szewczyk | molecular biology and cell signalling | Best Researcher Award

Wroclaw Medical University, Poland

Profile

Scopus 

Early Academic Pursuits 🎓

Anna Szewczyk (Zielichowska) embarked on her scientific journey with a deep passion for biomedical research, particularly in the field of innovative cancer therapies. From an early stage, she displayed a remarkable ability to grasp complex biological concepts and apply them in a laboratory setting. Her academic years were filled with rigorous coursework and hands-on research experiences that strengthened her foundation in molecular biology, cellular studies, and advanced laboratory techniques. Her dedication to scientific exploration set her apart, paving the way for a promising career in oncology and electroporation-based treatments.

Professional Endeavors 💼

Anna Szewczyk has made significant strides in the field of biomedical research through her work at the State Research Institute Center for Innovative Medicine in Vilnius, Lithuania, and Wroclaw Medical University in Poland. As a postdoctoral fellow in Vilnius, she has been deeply involved in studying nanosecond electroporation and its applications in gene electrotransfer. Her research focuses on analyzing the cellular stress induced by electroporation, a crucial aspect of optimizing this technology for therapeutic purposes. Her work at Wroclaw Medical University further highlights her expertise in immuno-oncology, electroporation techniques, and 3D bioprinting. She has played a key role in optimizing therapy parameters, validating results, and contributing to the development of advanced cancer treatments.

Contributions and Research Focus 🌍

Anna’s research is centered on exploring the potential of electroporation-based treatments in oncology. By utilizing various pulse variants, such as microsecond and nanosecond pulses, as well as unipolar and bipolar techniques, she aims to enhance drug delivery and improve cancer treatment outcomes. Her work incorporates methodologies such as electro-chemotherapy, confocal microscopy, and immunocytochemistry assays to assess the effectiveness of these treatments. Additionally, her expertise in 3D bioprinting enables her to create realistic cancer models that aid in testing new therapeutic approaches. She is also actively involved in grant applications and conference organization, ensuring that her research contributes to the broader scientific community.

Accolades and Recognition 🏆

Anna’s dedication and contributions to biomedical research have been recognized through multiple publications in esteemed scientific journals. Her findings have provided valuable insights into the mechanisms of electroporation and its implications in cancer therapy. She has also been invited to present her research at international conferences, where she has shared her knowledge with fellow scientists and established meaningful collaborations. Her ability to secure funding for research projects further demonstrates her commitment to advancing the field of oncology and electroporation-based therapies.

Impact and Influence 📈

Through her research and professional endeavors, Anna Szewczyk has made a significant impact on the scientific community. Her work in electroporation has contributed to the development of more precise and effective cancer treatments, offering hope to patients with aggressive or treatment-resistant cancers. She has also been instrumental in mentoring young researchers, guiding them in their academic pursuits and fostering a collaborative research environment. Her passion for scientific discovery continues to inspire those around her, making her a respected figure in her field.

Legacy and Future Contributions 🌟

As she continues to advance in her career, Anna aims to expand the applications of electroporation-based therapies and explore new frontiers in cancer treatment. She envisions a future where these innovative techniques become a standard part of clinical oncology, improving patient outcomes worldwide. By collaborating with leading scientists and institutions, she seeks to further refine electroporation methodologies and develop novel therapeutic strategies. Her legacy will be one of relentless pursuit of scientific excellence, a commitment to innovation, and a passion for making a meaningful impact in the fight against cancer.

📝Notable Publications

Cytotoxic Activity of Curcumin- and Resveratrol-Loaded Core–Shell Systems in Resistant and Sensitive Human Ovarian Cancer Cells

Author: J. Weżgowiec, Z. Łapińska, Ł. Lamch, M. Wiȩckiewicz, K.A. Wilk
Journal: International Journal of Molecular Sciences
Year: 2025

The Additive Effect of 17β-Estradiol on the Modulation of Electrochemotherapy with Calcium Ions or Cisplatin in Human Clear Carcinoma Cells

Author: Z. Łapińska, N. Rembiałkowska, A. Szewczyk, J. Kulbacka, D. Baczyńska
Journal: Biomedicine and Pharmacotherapy
Year: 2024

Electroporation-Derived Melanoma Extracellular Particles Activate Fibroblasts

Author: A. Choromańska, U. Szwedowicz, A. Szewczyk, D. Baczyńska, J. Kulbacka
Journal: BBA – General Subjects
Year: 2024

Application of Gold Nanoparticles for Improvement of Electroporation-Assisted Drug Delivery and Bleomycin Electrochemotherapy

Author: B. Lekešytė, E. Mickevičiūtė, P. Malakauskaitė, J. Novickij, V. Novickij
Journal: Pharmaceutics
Year: 2024