Jing Wang | Materials Science | Best Researcher Award

Dr. Jing Wang | Materials Science | Best Researcher Award

Dr. Jing Wang, Peking University, China

Dr. Jing Wang is an Associate Researcher and Master’s Supervisor at the School of Pharmaceutical Sciences, Peking University, China. A distinguished scientist, she has published 14 impactful research papers as the first author or corresponding author in renowned journals, including Nature Communications, Advanced Materials, and Journal of the American Chemical Society. Her research focuses on innovative methodologies in pharmaceutical sciences, materials chemistry, and theranostics, significantly influencing these fields. With her dedication to advancing science and mentoring future researchers, Dr. Wang continues to contribute groundbreaking work that addresses critical challenges in healthcare and interdisciplinary research.

Author Profile

Orcid Profile

📘EARLY ACADEMIC PURSUITS:

Dr. Jing Wang embarked on her academic journey with a deep-seated passion for pharmaceutical sciences. Her foundational studies laid the groundwork for her expertise, paving the way for her to contribute meaningfully to the field. Her academic excellence and commitment to learning were evident early on, earning her opportunities at prestigious institutions, culminating in her role at Peking University.

🏛️PROFESSIONAL ENDEAVORS:

As an Associate Researcher and Master’s Supervisor at the School of Pharmaceutical Sciences, Peking University, Dr. Wang plays a dual role as a dedicated educator and a prolific researcher. She mentors aspiring researchers, guiding them through complex scientific inquiries, and actively contributes to cutting-edge pharmaceutical research that addresses global challenges.

🔬CONTRIBUTIONS AND RESEARCH FOCUS ON MATERIALS SCIENCE:

In recent years, Dr. Wang has published 14 groundbreaking research papers as the first author or corresponding author. Her work has appeared in world-renowned journals such as Nature Communications, Advanced Materials, Journal of the American Chemical Society (JACS), Theranostics, and Analytical Chemistry. Her research spans a broad spectrum, focusing on innovative methodologies, material science applications in medicine, and novel therapeutic strategies.

🌍IMPACT AND INFLUENCE:

Dr. Wang’s contributions have had a profound impact on the pharmaceutical sciences community. Her work is frequently cited and serves as a foundation for further research in areas like theranostics and analytical chemistry. By addressing pressing issues in healthcare and medical technology, her findings have the potential to influence patient outcomes and industrial practices.

📚ACADEMIC CITES:

Dr. Wang’s publications are not just numerous but also impactful, as reflected by citations in other high-impact journals. This demonstrates her influence as a thought leader and her ability to advance knowledge in pharmaceutical sciences, materials chemistry, and interdisciplinary fields.

🌟LEGACY AND FUTURE CONTRIBUTIONS:

Dr. Wang’s legacy lies in her ability to merge academic excellence with meaningful scientific contributions. As she continues her journey, she is poised to make even greater strides in her research, inspire future generations of scholars, and contribute to transformative innovations in pharmaceutical sciences.

🏆CONCLUSION:

Dr. Jing Wang exemplifies excellence in research and education through her significant contributions to pharmaceutical sciences. With 14 impactful publications in prestigious journals, her work advances innovative methodologies and interdisciplinary applications, addressing critical challenges in healthcare and science. As an Associate Researcher and Master’s Supervisor at Peking University, she not only drives groundbreaking research but also mentors the next generation of scholars. Dr. Wang’s dedication, expertise, and influence have positioned her as a leading figure in her field, ensuring her legacy as a transformative force in pharmaceutical and materials science. Her continued endeavors promise further groundbreaking achievements.

TOP NOTABLE PUBLICATIONS

📘 In situ analysis of nanoparticle soft corona and dynamic evolution
Authors: Didar Baimanov, Wang Jing, Zhang J, Liu K, Yalin Cong, Shi X, Zhang X, Yu-Feng Li, Xiumin Li, Qiao R et al.
Year: 2022

🧪 Role of tannic acid against SARS-CoV-2 cell entry by targeting the interface region between S-protein-RBD and human ACE2
Authors: Chen X, Wang Z, Wang J, Yao Y, Wang Q, Huang J, Xiang X, Zhou Y, Xue Y, Li Y et al.
Year: 2022

🔬 Size- and surface chemistry-dependent pharmacokinetics and tumor accumulation of engineered gold nanoparticles after intravenous administration
Authors: Wang J, Bai R, Yang R, Liu J, Tang J, Liu Y, Li J, Chai Z, Chen C
Year: 2022

🏥 Bioorthogonal SERS Nanotags as a Precision Theranostic Platform for in Vivo SERS Imaging and Cancer Photothermal Therapy
Authors: Wang J, Liang D, Jin Q, Feng J, Xinjing Tang
Year: 2020

🩺 Multicolor Cocktail for Breast Cancer Multiplex Phenotype Targeting and Diagnosis Using Bioorthogonal Surface-Enhanced Raman Scattering Nanoprobes
Authors: Wang J, Liang D, Feng J, Xinjing Tang
Year: 2019

💊 Gd-Hybridized Plasmonic Au-Nanocomposites Enhanced Tumor-Interior Drug Permeability in Multimodal Imaging-Guided Therapy
Authors: Wang J, Liu J, Liu Y, Wang L, Cao M, Ji Y, Wu X, Xu Y, Bai B, Qing Robert Miao et al.
Year: 2016

💡 Near infrared laser-induced targeted cancer therapy using thermoresponsive polymer encapsulated gold nanorods
Authors: Zhenjiang Zhang, Wang J, Nie X, Wen T, Ji Y, Wu X, Zhao Y, Chunying Chen
Year: 2014

🛠 Near-infrared light-mediated nanoplatforms for cancer thermo-chemotherapy and optical imaging
Authors: Zhenjiang Zhang, Wang J, Chunying Chen
Year: 2013

🧬 Nano-bio effects: interaction of nanomaterials with cells
Authors: Cheng LC, Jiang X, Wang J, Chunying Chen, Ru-Shi Liu
Year: 2013

Gold nanorods based platforms for light-mediated theranostics
Authors: Zhenjiang Zhang, Wang J, Chunying Chen
Year: 2013

🌟 Mesoporous silica-coated gold nanorods as a light-mediated multifunctional theranostic platform for cancer treatment
Authors: Zhenjiang Zhang, Wang L, Wang J, Jiang X, Li X, Hu Z, Ji Y, Wu X, Chunying Chen
Year: 2012

 

Dong Chan Lim | Advanced Materials Engineering | Best Researcher Award

Dr. Dong Chan Lim | Advanced Materials Engineering | Best Researcher Award

Dr. Dong Chan Lim , Korea Institute of Materials Science, South Korea.

Dr. Dong Chan Lim, a Principal Researcher at the Korea Institute of Materials Science (KIMS), is a distinguished expert in materials science with over 15 years of professional experience. He holds a Bachelor’s and Master’s degree in Chemistry from Sungkyunkwan University, Korea, and earned his Ph.D. in Cluster Physics from the University of Konstanz, Germany. Dr. Lim’s research spans advanced areas such as solar cell materials, low-dimensional nanostructures, energy-efficient systems, and surface modification for functional thin films. With a prolific record of over 160 SCI-indexed publications and 65 patents, he has significantly contributed to sustainable energy solutions and smart energy control systems. Recognized with the Prime Minister’s Award for Regional Industry Promotion, Dr. Lim also serves as Chair of the Sustainable Energy Division of the Korean Vacuum Society and contributes to SCI journals as an editor and reviewer. His work exemplifies innovation, leadership, and dedication to advancing science for societal benefit.

Professional Profile:

Summary of Suitability for Best Researcher Award

Dr. Dong Chan Lim, a distinguished Principal Researcher at the Korea Institute of Materials Science (KIMS), demonstrates exemplary contributions to materials science, particularly in energy and electronic materials. With over 160 SCI papers and 65 patents, his prolific output underscores his innovative prowess. He specializes in solar cell materials, low-dimensional nanostructures, and surface modifications for functional thin films, showcasing a profound impact on sustainable energy solutions. His leadership roles, including serving as Chair of the Sustainable Energy Division of the Korean Vacuum Society and as a Section Editor for Current Alternative Energy, highlight his influence in advancing the field globally.

🎓 Education:

Dr. Dong Chan Lim possesses a strong academic foundation in chemistry and physics. He earned his Bachelor of Science and Master of Science degrees from Sungkyunkwan University, Korea, specializing in physical chemistry. Building on this expertise, he pursued his Ph.D. in Cluster Physics under Prof. Dr. AG Ganteför at the University of Konstanz, Germany, in 2003. His educational journey reflects a multidisciplinary approach, integrating advanced chemical and physical principles to address complex challenges in materials science. This diverse academic background has been pivotal in shaping his research career, enabling him to excel in energy materials and innovative technological solutions.

💼 Professional Experience:

Dr. Dong Chan Lim is a Principal Researcher at the Korea Institute of Materials Science (KIMS), specializing in energy and electronic materials. Since 2007, he has led groundbreaking projects in solar cell technology, nanostructure engineering, and smart energy systems. He has served as the Director of the Energy Convergence Materials Research Center at KIMS and currently chairs the Sustainable Energy Division of the Korean Vacuum Society. Dr. Lim is also a member of the Climate and Environment R&D Program Steering Committee in Korea. His contributions have significantly advanced materials science, earning him numerous accolades and over 65 patents.

🌍Research Contributions:

Dr. Dong Chan Lim has made remarkable contributions to materials science, particularly in energy and electronic materials. His research focuses on solar cell material synthesis, low-dimensional nanostructure engineering, and functional surface modifications for advanced thin films. He has also developed cutting-edge systems, including smart energy control systems, IoT-assisted sensors, and roll-to-roll wet coating technologies. With over 160 SCI-indexed publications and 65 patents, Dr. Lim’s work bridges fundamental science and practical applications, addressing challenges in sustainable energy, water purification, and smart factory systems. His innovative research significantly advances renewable energy technologies and their real-world implementation.

🥇Award and Honors:

Dr. Dong Chan Lim has received numerous prestigious awards and honors in recognition of his outstanding contributions to materials science and sustainable energy research. Among his accolades is the Prime Minister’s Award for Regional Industry Promotion, acknowledging his innovative advancements and impact on industrial development. He holds esteemed positions such as Chair of the Sustainable Energy Division of the Korean Vacuum Society and is an active member of the Climate and Environment R&D Program Steering Committee in Korea. His editorial roles for SCI journals further highlight his academic excellence and dedication to advancing knowledge in energy and materials science.

 

Conclusion:

Dr. Dong Chan Lim is an accomplished researcher whose groundbreaking contributions to materials science and sustainable energy systems set him apart as a leader in his field. With over 15 years of expertise at KIMS, he has excelled in solar cell materials, nanostructure engineering, and smart energy systems. His prolific output of over 160 SCI-indexed publications and 65 patents underscores his innovative capabilities. Recognized with prestigious awards, including the Prime Minister’s Award, and holding leadership roles in academic and professional communities, Dr. Lim exemplifies excellence, innovation, and dedication. He is a deserving candidate for the Research for Best Researcher Award.

📚Publication Top Notes:

Ag nanoparticles on highly ordered pyrolytic graphite (HOPG) surfaces studied using STM and XPS

citations : 295

Performance optimization of low-temperature-annealed solution-processable ZnO buffer layers for inverted polymer solar cells

citations : 128

Electronic and geometric properties of Au nanoparticles on highly ordered pyrolytic graphite (HOPG) studied using X-ray photoelectron spectroscopy (XPS) and scanning tunneling …

citations : 125

Highly efficient inverted bulk-heterojunction solar cells with a gradiently-doped ZnO layer

citations : 113

Role of additional PCBM layer between ZnO and photoactive layers in inverted bulk-heterojunction solar cells

citations : 104

Recent progress in solar cell technology for low-light indoor applications

citations : 101

Enhanced photoelectrochemical solar water splitting using a platinum-decorated CIGS/CdS/ZnO photocathode

citations : 98

Towards fabrication of high-performing organic photovoltaics: new donor-polymer, atomic layer deposited thin buffer layer and plasmonic effects

citations : 94