Prof. Dr. Caroline Sunyong lee – Gas sensor  – Best Researcher Award  

Prof. Dr. Caroline Sunyong lee - Gas sensor  - Best Researcher Award  

Hanyang University -  South Korea

Author Profile 

SCOPUS 

🎓 Early academic pursuits

Caroline Sunyong lee's academic journey is rooted in her deep passion for materials science. she pursued her graduate studies at the university of california, berkeley, where she worked as a research assistant in the ceramic processing laboratory. her doctoral research focused on developing processes to join dissimilar ceramic materials, specifically silicon nitride and alumina, using sialon as an interlayer. this work significantly improved high-temperature performance and was supported by extensive characterization using transmission electron microscopy (tem). her academic excellence led her to a postdoctoral fellowship at gyeongsang national university, further refining her expertise in engineering research.

💼 Professional endeavors

Dr. Lee’s professional career is marked by a rich blend of industrial and academic experiences. she began her career at applied materials, where she worked on dielectric etching processes and advanced semiconductor fabrication techniques. at intel corporation, she contributed to the advanced interconnected technology development division, optimizing gold sputter equipment for improved manufacturing yields. later, she joined lg electronics institute of technology as a chief research engineer, focusing on nano-data storage systems, cantilever fabrication, and media development for low-power scanning probe microscopy (spm)-based data storage. since 2006, she has been a professor at hanyang university, where she has been instrumental in advancing research in functionally graded materials, mems technology, and electronic materials.

🔬 Contributions and research focus

Dr. Lee’s research spans diverse domains within materials science, particularly in nanomaterials and electronic devices. she has played a pivotal role in developing supersonic micronozzles using deep reactive ion etching (drie), nano-particle deposition systems (npds) for ceramic and metal powder coatings, and self-assembled monolayer (sam) coatings for nano-sized copper Gas sensor powders. her work also extends to electrochromic windows, gas sensors, dye-sensitized solar cells (dssc), and photocatalysts, which have significant applications in energy and environmental technologies. her contributions have led to enhanced material properties, improved fabrication techniques, and innovations in sustainable energy solutions.

🏆 Accolades and recognition

Dr. Lee's outstanding contributions to materials science and engineering have earned her widespread recognition. she serves as the director of administration for the korean institute of metals and materials, a testament to her leadership in the field. her role as director of the ieep in tanzania showcases her commitment to global education and research collaboration. in academia, Gas sensor she has mentored and graduated 32 master’s students and four ph.d. students, further strengthening the scientific community with her expertise and guidance.

🌍 Impact and influence

Beyond her research contributions, dr. lee has significantly impacted the academic landscape through teaching and mentorship. she has designed and delivered courses in materials science, Gas sensor materials electrochemistry, composite materials, semiconductor devices, micro and nano fabrication, and polymer materials. her ability to translate complex scientific concepts into practical applications has influenced countless students and researchers. her work in mems and nano-fabrication technologies continues to shape the future of electronic and energy materials.

🔄 Legacy and future contributions

Dr. Lee’s legacy in materials science and chemical engineering is defined by her relentless pursuit of innovation and education. as a leader in advanced material research, she continues to explore novel approaches in electronic materials, sustainable energy applications, and multifunctional devices. her work at hanyang university and her contributions to international collaborations set a strong foundation for future advancements. through her mentorship, research, and leadership, she remains an inspiring figure in the field of nanotechnology and materials engineering, shaping the next generation of scientists and engineers.

Notable Publications 

  1. Title: Performance enhancement of rechargeable zinc-air battery through synergistic ex-solution of multi-component Pt/CoWO₄₋ₓ catalysts
    Author(s): Changho Lee, Chang-kyu Hwang, Jung-won An, Sunyong Caroline Lee, Ki Ro Yoon
    Journal: Applied Catalysis B: Environmental, 2024

  2. Title: The superior mineralization potential of a graphitic carbon nitride/titanium dioxide composite and its application in the construction of a portable photocatalytic air purification system against gaseous formaldehyde
    Author(s): Myeonseong Cho, Sherif A. Younis, Sunyong Caroline Lee, Xiaowei Li, Ki Hyun Kim
    Journal: Journal of Materials Chemistry A, 2024

  3. Title: Fabrication of Fe-4.5 wt% Si core-shell soft magnetic composite (SMC) via milling assisted pressureless sintering method for high-frequency application
    Author(s): Taehyeob Im, Kwiyoung Lee, Jonghyeok Ahn, Jongryoul Kim, Sunyong Caroline Lee
    Journal: Journal of Materials Research and Technology, 2024

  4. Title: Construction of highly porous Z-scheme CuSe₂/ZnSe heterostructure to achieve efficient CO₂ photoreduction activity
    Author(s): Hazina Charles, Plassidius J. Chengula, Heungseok Oh, Sunyong Caroline Lee
    Journal: Surfaces and Interfaces, 2024

  5. Title: Introduction to subpressure-driven soft deformation method for removing inherent voids in green components manufactured by material extrusion
    Author(s): Taehyeob Im, Heungseok Oh, Byeonghwa Goh, Joonmyung C. Choi, Sunyong Caroline Lee
    Journal: Heliyon, 2024

Prof. sheng-Lin Qiao – Bioelectronics – Best Researcher Award

Prof. sheng-Lin Qiao - Bioelectronics - Best Researcher Award

Qingdao University of Science and Technology - China

Author Profile

SCOPUS

Early academic pursuits 🎓

sheng-Lin Qiao began his academic journey with a strong focus on materials science. His passion for research led him to pursue a ph.d. at the national center for nanoscience and technology in 2013, where he delved into the world of self-assembled biomaterials. During his ph.d., he explored the potential of these biomaterials for medical applications, developing a deep understanding of nanotechnology and biomedical engineering. He earned his doctorate in 2019, solidifying his foundation in the interdisciplinary field of nanoscience.

Professional endeavors 🏛️

In 2020, dr. qiao joined the qingdao university of science and technology as an associate professor at the college of materials science. In this role, he also serves as a master's supervisor, guiding the next generation of scientists in the field. Beyond his academic commitments, dr. qiao is actively engaged with several prestigious Bioelectronics journals, serving as a promotion editor and a reviewer for top-tier publications such as nature communications and nano today. His leadership in academia and research continues to inspire students and fellow researchers alike.

Contributions and research focus 🔬

Dr. Qiao's research focuses on developing functional micro/nanomaterials with applications in the biomedical field. His work has led to significant advancements in the use of self-assembled biomaterials for medical purposes, including drug delivery and tissue engineering. He has authored 41 high-impact publications in Bioelectronics renowned journals such as progress in polymer science, nature communications, advanced materials, and acs nano. His research not only expands the boundaries of nanotechnology but also holds great potential for improving healthcare and medical treatments.

Accolades and recognition 🏅

Dr. Qiao's outstanding contributions to science have earned him numerous accolades. In 2024, he was honored with the wiley china high contribution author award, recognizing his prolific research output and impact in the field. With an impressive h-index of 22 and over 1,800 citations, his work has been widely recognized and Bioelectronics respected within the scientific community. Additionally, dr. qiao holds 7 patents, including one that has been successfully commercialized, highlighting his ability to translate research into real-world applications.

Impact and influence 🌍

Through his research, dr. qiao has had a profound impact on the fields of nanotechnology and biomedicine. His innovative work on biomaterials for medical applications has the potential to revolutionize healthcare, offering new solutions for drug delivery systems and tissue engineering. As an editor and reviewer for leading scientific journals, he plays a crucial role in shaping the future of research, ensuring that groundbreaking work continues to advance the frontiers of science.

Legacy and future contributions 🔮

Dr. Qiao's legacy is built on his innovative contributions to materials science and his commitment to advancing nanotechnology for the betterment of human health. His future work is expected to continue pushing the boundaries of biomedical applications, further integrating nanotechnology with medicine. As a mentor and researcher, dr. qiao is dedicated to nurturing the next generation of scientists, ensuring that his impact will endure through the work of those he has influenced.

Notable Publications 

  1. Title: Flexible Wearable Ionogels: Classification, Fabrication, Properties and Applications
    Authors: Zhang, Y.-A., Ma, K., Chen, K.-Z., Qiao, S.-L.
    Journal: Sensors and Actuators A: Physical, 2024, 372, 115325
  2. Title: Engineered CpG-Loaded Nanorobots Drive Autophagy-Mediated Immunity for TLR9-Positive Cancer Therapy
    Authors: Wang, Y., Qiao, S.-L., Wang, J., Lin, Y.-X., Wang, H.
    Journal: Advanced Materials, 2024, 36(22), 2306248
  3. Title: Gold Nanocluster-Based Nanozyme for High-Throughput Colorimetric Detection of SARS-CoV-2
    Authors: Ma, K., Yin, M., Wang, X.-X., Chen, K.-Z., Qiao, S.-L.
    Journal: ACS Applied Nano Materials, 2024, 7(9), pp. 10660–10669
  4. Title: Customizable and Scalable Manufacture of Aesthetic Ionic Conductive Silk Yarns for E-Textile Devices
    Authors: Wang, K., Wang, X.-X., Wang, C.-Y., Chen, K.-Z., Qiao, S.-L.
    Journal: Chemical Engineering Journal, 2024, 487, 150645
  5. Title: Advances of Layered Double Hydroxide-Based Materials for Tumor Imaging and Therapy
    Authors: Ma, K., Chen, K.-Z., Qiao, S.-L.
    Journal: Chemical Record, 2024, 24(4), e202400010

Dr. Atakan tevlek – biosensor – Best Researcher Award

Dr. Atakan tevlek - biosensor - Best Researcher Award

Atilim University - Turkey

Author Profile

ORCID

Early academic pursuits 🎓

Atakan tevlek embarked on his academic journey at hacettepe university, where he earned his bachelor’s degree in biology from the institute of science in 2012. his passion for biomedical engineering led him to continue at the same university, pursuing an integrated phd in bioengineering at the institute of science and engineering. this academic foundation set the stage for his future contributions to bioengineering and tissue engineering.

Professional endeavors 🏢

from 2019 to 2023, atakan served as an experienced researcher at middle east technical university (metu) in the mems center in ankara, turkey. during this period, he expanded his expertise in micro-nano fabrication technologies and advanced biomaterials. prior to this role, he worked intensively on his phd research, which involved innovative approaches in tissue engineering and bio-mems applications. his professional career has been marked by a commitment to advancing research in bioengineering and related fields.

Contributions and research focus 🔍

atakan’s research primarily revolves around 3d cell culture techniques and the development of cell spheroids for bio-mems applications. his work on decellularized tissues and hydrogels has significantly advanced tissue engineering and lab-on-a-chip technologies. he has also made biosensor notable contributions to micro-nano fabrication and surface patterning strategies for implant materials. his research integrates the synthesis and characterization of polymeric and composite biomaterials, aiming to enhance tissue engineering applications.

Accolades and recognition 🏅

atakan has received recognition for his impactful research, as evidenced by his citation metrics. his work has been cited extensively across biosensor various databases, including google scholar, scopus, and web of science, each reflecting his significant contributions to the field. his h-index of 10 indicates his work's influence and relevance in the research community, showcasing his successful integration of advanced technologies in bioengineering.

Impact and influence 🌍

through his research, atakan has made substantial contributions to the fields of bioengineering and tissue engineering. his innovative biosensor approaches to 3d cell culture, decellularized tissues, and bio-mems applications have enhanced our understanding and capabilities in these areas. his work impacts both academic research and practical applications in medical technologies, influencing how we approach tissue engineering and organ-on-chip systems.

Legacy and future contributions 🔮

atakan tevlek's legacy lies in his pioneering work in bioengineering and tissue engineering. his future research is poised to further explore and expand the applications of biomaterials and cell culture technologies. with ongoing advancements in his field, atakan’s contributions will continue to influence the development of cutting-edge medical and biotechnological solutions, ensuring a lasting impact on both academia and industry.

Notable Publications