Yunqi Zhang | Design and Analysis of FRP Components | Best Researcher Award

Assoc. Prof. Dr. Yunqi Zhang | Design and Analysis of FRP Components | Best Researcher Award

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

Profile:

Current Position 🏢

Yunqi Zhang is an Associate Professor and Master’s Supervisor at the prestigious Xi’an University of Posts and Telecommunications, within the School of Electronic Engineering. With expertise in Electronic Science and Technology, Yunqi leads innovative research and provides mentorship to aspiring scholars, contributing significantly to advancements in the field.

Publication Achievements 📚

Yunqi Zhang has a remarkable record of publishing over 10 SCI-indexed academic papers in leading international journals. These publications encompass topics like array antennas, vortex electromagnetic waves, and intelligent metasurfaces, showcasing his profound impact on the global scientific community. His work bridges the gap between theory and application, offering innovative solutions for challenges in wireless communication and beyond.

Ongoing Research and Innovations 🔬

Yunqi Zhang’s research portfolio demonstrates his dedication to pushing the boundaries of modern technology:

  • 5G Mobile Communication Antenna Decoupling Technology: Supported by the Shaanxi Provincial Department of Education, this project focuses on graphene-based antenna designs to enhance communication efficiency.
  • Acoustic Wave Reflection and Refraction Phenomena: Funded by the National Natural Science Foundation of China, this ambitious project investigates the theoretical and experimental dynamics of acoustic wave propagation, laying a foundation for innovative practical applications.
  • Reflective Array Antennas and Intelligent Metasurfaces: These groundbreaking studies explore cutting-edge technologies to revolutionize wireless communication and signal processing.

Research Interests 🌟

  • Array Antennas
  • Vortex Electromagnetic Waves
  • Intelligent Metasurfaces
  • Graphene-Based Technologies

These focus areas align with the global transition toward more efficient and sustainable wireless communication systems.

Academic Background 🎓

  • Bachelor’s Degree in Electronic Information Engineering 
    • Xi’an University of Electronic Science and Technology, 2009.
  • Doctoral Degree in Electromagnetic Field and Wireless Technology 
    • Xi’an University of Electronic Science and Technology, 2015.

These qualifications underpin his authority and success as a researcher and educator.

Scholarships and Awards 🏆

Throughout his career, Yunqi Zhang has been recognized for his academic excellence and innovative research contributions. His projects have received significant funding from prestigious institutions like the Shaanxi Provincial Government and the Xi’an Municipal Science and Technology Bureau.

Professional Associations and Training 🌟

Yunqi actively participates in international workshops and conferences, where he shares insights and collaborates with leading experts. His dedication to continuous learning and collaboration fosters a network of innovation in his field.

Oral Presentations 🎤

A dynamic speaker, Yunqi Zhang regularly presents his findings at global scientific forums. These presentations have garnered attention for their clarity, depth, and innovative perspective, inspiring peers and future researchers alike.

Tasks Completed as a Researcher ✅

  • Leading Interdisciplinary Projects: Successfully managed and delivered projects like the Key Research and Development Program of Shaanxi and Xi’an Science and Technology Plan Project.
  • Pioneering Antenna Design Techniques: Achieved groundbreaking results in graphene-enhanced antennas and vortex electromagnetic wave applications.

Success Factors 🌠

  • Innovative Thinking: Exploring cutting-edge technologies with practical implications.
  • Collaborative Mindset: Engaging with industry and academia for impactful research.
  • Dedication to Excellence: Aiming for precision and high standards in every project.

Publications & Laboratory Experience 🧪

Yunqi Zhang has built an impressive laboratory ecosystem, enabling the experimental validation of theories in fields like antenna technology and wave propagation. His hands-on approach bridges the gap between conceptual frameworks and tangible results.

📖Publications:

Paper Title: Mode Reconfigurable OAM Helical Array Antenna for Higher Mode Generation

  • Authors: Zhang, Y., Yang, R., Li, X., Zhang, X., Wang, S.
  • Journal: Microwave and Optical Technology Letters
  • Year: 2024

Paper Title: 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.
  • Journal: Applied Computational Electromagnetics Society Journal
  • Year: 2024

Paper Title: Wideband Low-Profile Fabry-Perot Cavity Antenna with Metasurface

  • Authors: Song, X., Dong, A., Li, X., Yang, H., Li, Y.
  • Journal: Applied Computational Electromagnetics Society Journal
  • Year: 2024

Paper Title: 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.
  • Journal: IEEE Photonics Technology Letters
  • Year: 2024

Paper Title: Gain-Enhanced and Mechanically Reconfigurable Slot Antenna with Metasurface

  • Authors: Song, X., Dong, A., Li, X., Li, Y., Yang, H.
  • Journal: Applied Computational Electromagnetics Society Journal
  • Year: 2023

 

Shah Mohammad Azam Rishad | Composite Materials Science | FRP Composite Material Science Breakthrough Award

Mr. Shah Mohammad Azam Rishad | Composite Materials Science | FRP Composite Material Science Breakthrough Award

Khulna University of Engineering & Technology, Bangladesh

Profile:

Current Position📊

Shah Mohammad Azam Rishad is an Assistant Researcher at Khulna University of Engineering & Technology (KUET), Bangladesh. His role involves active participation in cutting-edge research, where he integrates advanced materials science with computational approaches to tackle pressing challenges in the field. His primary focus is on Nano Trimaterial bonded joints and Ultra-High Temperature Ceramic Matrix Composites (UHTCMCs). With a strong inclination toward interdisciplinary research, Shah is continuously contributing to innovations in materials design and performance optimization. 

Publication Achievements📚

Despite being early in his career, Shah Mohammad Azam Rishad has already contributed to several key publications in renowned scientific journals. His work on the prediction, optimization, and evaluation of Nano Trimaterial bonded joints using Finite Element Method (FEM) combined with various Machine Learning algorithms such as Random Forest, Neural Network, Support Vector Regression (SVR), and Decision Tree Regressor has received significant attention from the academic community. His publications explore the intersection of materials science and computational intelligence, making his research invaluable for industries aiming to optimize material behaviors and structural performance. 

Ongoing Research🔬

Currently, Shah is deeply involved in two main research areas. One of his ongoing projects explores UHTCMCs (Ultra-High Temperature Ceramic Matrix Composites) and MMCs (Metal Matrix Composites). His research focuses on the fabrication processes of these materials, along with their microstructural analysis using state-of-the-art techniques like SEM imaging, EDS, and mapping. Shah’s goal is to better understand the material behaviors and unlock potential applications in industries such as aerospace, automotive, and electronics. His work on Nano Trimaterial bonded joints continues, where machine learning algorithms are employed to predict and enhance the structural performance of advanced materials. 

Research Interests🔍

Shah’s research interests lie at the confluence of computational materials science, machine learning, and structural mechanics. He is particularly focused on developing innovative solutions for enhancing the mechanical properties of composites and nanomaterials. His areas of interest include:

  • Machine Learning Applications in Materials Science
  • Nano Trimaterial Bonded Joints
  • Ultra-High Temperature Ceramic Matrix Composites (UHTCMCs)
  • Metal Matrix Composites (MMCs)
  • Finite Element Method (FEM) for Structural Optimization
    His passion for merging materials science with artificial intelligence has opened new avenues for optimizing material properties and creating smarter, more resilient structures. 

Academic Background🎓

Shah Mohammad Azam Rishad holds a strong academic foundation in engineering and materials science, which has paved the way for his successful research endeavors. His education at KUET provided him with the skills necessary to excel in both theoretical and practical aspects of materials research. His academic journey reflects a commitment to understanding the deeper mechanics of materials and their applications across industries. 

Scholarships and Awards🏆

Throughout his academic career, Shah has been the recipient of numerous scholarships and academic awards, acknowledging his dedication to research and innovation. His ability to secure funding for research projects and his academic excellence have set him apart as a promising researcher in the field of materials science. 

Bioinformatics💻

While Shah’s core expertise lies in materials science, his interdisciplinary approach to research also draws upon aspects of bioinformatics. By applying computational methods to the analysis of material structures, Shah incorporates data-driven strategies to solve complex problems in materials behavior and optimization. His understanding of computational tools allows him to model and simulate material properties with high precision, leading to innovative research outcomes. 

Professional Associations🌐

Shah is a member of several professional societies and associations, which provide him with a platform to collaborate with fellow researchers and stay updated on the latest advancements in materials science. His involvement in these organizations reflects his commitment to expanding his network and contributing to the scientific community on a broader scale. 

Training & Workshops🎓

To further enhance his research capabilities, Shah actively participates in national and international workshops and training programs. These experiences allow him to stay abreast of the latest trends in materials research and computational methods. He has received hands-on training in microstructural analysis techniques, FEM simulation, and machine learning algorithms specific to materials science. 

Oral Presentation🎤

Shah has presented his research findings at various conferences and symposia, where he shared his insights on the potential applications of machine learning in optimizing material properties. His ability to communicate complex ideas effectively has garnered attention and appreciation from peers and experts in the field. 

Tasks Completed as a Researcher🛠️

Shah has successfully completed numerous tasks as a researcher, including the design and execution of experiments, data analysis using machine learning models, and the publication of his findings in respected journals. His responsibilities extend to mentoring junior researchers and collaborating with other faculty members to push the boundaries of materials science. 

Success Factors🚀

The key to Shah’s success lies in his problem-solving mindset, interdisciplinary knowledge, and commitment to innovation. His ability to seamlessly blend theoretical knowledge with practical applications has allowed him to make significant contributions to his field. His work ethic and continuous pursuit of excellence have earned him a reputation as a dedicated and forward-thinking researcher. 

Publications & Laboratory Experience🏭

Shah’s extensive laboratory experience in fabrication, microstructural analysis, and mechanical testing has been pivotal in his research. His publications reflect his in-depth knowledge of advanced materials and his ability to apply computational models for optimization. The hands-on experience Shah has gained in the lab has been complemented by his proficiency in FEM analysis and machine learning tools, making his contributions both practical and innovative. 

📖Publications:

Paper Title: Evaluation of Stress Distributions in Trimaterial Bonded Joints with Nano-Resin Adhesive Using Machine Learning Models

  • Authors: SMA Rishad, MS Islam, MA Islam
  • Journal: Results in Materials
  • Year: 2024

Paper Title: Analysis of Stress Distribution of CFRP Bonded Joints: A Study of Numerical and Machine Learning Approach

  • Authors: SMA Rishad, MA Islam, MS Islam
  • Journal: Available at SSRN
  • Year: 2024

 

Eunsoo Kim | Natural Fibers | Best Researcher Award

Dr. Eunsoo KIM | Natural Fibers | Best Researcher Award

Doctorate at Kangbuk Samsung Hospital, South Korea

Profile:

Dr. Eunsoo Kim: A Journey in Psychiatry

🎓Early Academic Pursuits

Dr. Eunsoo Kim, a distinguished psychiatrist, began his academic journey at Wonkwang University of Medicine, where he pursued his Doctor of Medicine (M.D.) degree from March 2010 to February 2017. This rigorous training laid the foundation for his expertise in psychiatry, providing him with a comprehensive understanding of medical science and clinical practice. His commitment to advancing his knowledge and skills led him to further his education at Sungkyunkwan University of Medicine, where he is currently pursuing a Master of Arts in Medicine since March 2022.

🏢Professional Endeavors

Dr. Kim’s professional journey is marked by significant roles in prominent medical institutions. After completing his M.D., he embarked on an internship at Kangbuk Samsung Hospital from September 2017 to August 2018. This experience was crucial in honing his clinical skills and preparing him for more specialized roles in psychiatry.

Following his internship, Dr. Kim continued his professional development at Kangbuk Samsung Hospital, where he completed his residency in the Department of Psychiatry from March 2019 to February 2023. During this period, he gained extensive experience in diagnosing and treating a wide range of psychiatric disorders, which has been instrumental in his development as a psychiatrist.

In March 2023, Dr. Kim advanced to a research fellowship at Kangbuk Samsung Hospital. This role has allowed him to engage in cutting-edge research, contributing to the broader field of psychiatry while also enhancing his clinical practice with the latest scientific insights.

🔬Contributions and Research Focus

Dr. Kim’s research interests are diverse and impactful, focusing on critical areas such as the relationship between lifestyle factors and mental health. His work often explores the intersection of physical and mental health, providing valuable insights into how various factors influence psychiatric conditions.

One of his notable studies, “Sex Differences in the Association between Prolonged Sitting Time and Anxiety Prevalence among Korean Adults,” published in Brain Sciences in 2024, investigates how sedentary behavior impacts anxiety levels differently in men and women. This research highlights the importance of considering gender differences in mental health interventions.

Another significant study, “Exploring the Association between Elevated Anxiety Symptoms and Low Skeletal Muscle Mass among Asymptomatic Adults: A Population-Based Study in the Republic of Korea,” also published in Brain Sciences in 2024, examines the link between physical fitness and anxiety. This work underscores the need for a holistic approach to mental health that includes physical well-being.

Dr. Kim has also explored the impact of work-related factors on mental health. His research, “Association between Working Hours and Depressive Symptoms among Korean Employees,” published in the Korean Journal of Biological Psychiatry in October 2022, provides critical insights into how occupational stressors contribute to depression.

Furthermore, his study titled “양극성 장애로 오인된 LGI1 Autoimmune Encephalitis,” published in the Korean Journal of Biological Psychiatry in June 2020, sheds light on the diagnostic challenges in psychiatry, particularly in distinguishing between bipolar disorder and autoimmune encephalitis. This research is crucial for improving diagnostic accuracy and treatment outcomes.

🏆Accolades and Recognition

Dr. Kim’s contributions to psychiatry have been recognized through various certifications and awards. He holds a medical license (License No. 125611) and is a certified medical specialist in psychiatry (License No. 4379). These credentials attest to his expertise and dedication to the field.

🌍Impact and Influence

Dr. Kim’s work has a profound impact on both the academic and clinical aspects of psychiatry. His research provides valuable insights that inform clinical practice, helping to improve patient outcomes. By investigating the links between lifestyle factors, physical health, and mental health, he advocates for a more integrated approach to psychiatric care.

His role as a research fellow at Kangbuk Samsung Hospital allows him to contribute to the scientific community while also mentoring the next generation of psychiatrists. His dedication to research and education ensures that his influence extends beyond his immediate clinical practice, impacting the broader field of psychiatry.

🌟Legacy and Future Contributions

Dr. Eunsoo Kim’s journey in psychiatry is marked by a commitment to advancing mental health through research, clinical practice, and education. His work not only addresses current challenges in psychiatry but also paves the way for future advancements. As he continues his research fellowship and pursues his MA in Medicine, Dr. Kim is poised to make even greater contributions to the field.

📖Publications:

Paper Title: Exploring the Association between Elevated Anxiety Symptoms and Low Skeletal Muscle Mass among Asymptomatic Adults: A Population-Based Study in Republic of Korea

  • Authors: Kim, E., Jung, S., Lee, M.Y., Park, C.-H., Cho, S.J.
  • Journal: Brain Sciences
  • Year: 2024

Paper Title: Association between intra-individual variability and prefrontal cortex activity measured by functional Near Infrared Spectroscopy (fNIRS) in children with ADHD

  • Authors: Lee, U., Oh, K.-S., Shin, Y.C., Kim, E.-J., Shin, D.
  • Journal: Child Neuropsychology
  • Year: 2024

Paper Title: Effectiveness of a Community-Based Intensive Case Management Model on Reducing Hospitalization for People With Severe Mental Illness in Seoul

  • Authors: Sohn, J.H., Cho, S.J., Lee, H.W., Park, J.E., Hahm, B.J.
  • Journal: Psychiatry Investigation
  • Year: 2023

Paper Title: Occupational stress and depression of Korean employees: Moderated mediation model of burnout and grit

  • Authors: Jung, S., Shin, Y.C., Lee, M.Y., Jeon, S.-W., Cho, S.J.
  • Journal: Journal of Affective Disorders
  • Year: 2023

Paper Title: Gender Differences in the Association between Workplace Bullying and Depression among Korean Employees

  • Authors: Jung, S., Lee, H.-J., Lee, M.Y., Kim, M.-K., Cho, S.J.
  • Journal: Brain Sciences
  • Year: 2023