Prof Dr. NA LI | Gas Engineering | Best Researcher Award
Professor at Chengdu University of Technology , China.
Prof. Dr. Na Li is a distinguished academic and researcher specializing in analytical chemistry with a focus on advanced nanomaterials and their applications. Currently a Professor at Chengdu University of Technology, Dr. Li’s research spans multifunctional nano-tracers, imaging methods for geological materials, and rapid quantitative biomarker analysis. His notable contributions include the development of innovative tracer systems for fracture monitoring and pore imaging in shale and other geological materials. Dr. Li has garnered significant recognition, including the 2nd Prize at the 2022 China Association for Instrumental Analysis Science and Technology Award and several teaching and research accolades. His extensive publication record in high-impact journals underscores his expertise and impact in the field. Dr. Li’s work has broad implications for environmental health, vector control, and waste management, showcasing his commitment to advancing scientific understanding and practical solutions in these critical areas.
Profile
Professor Dr. Na Li is a distinguished scholar with a solid foundation in analytical chemistry. She obtained her Ph.D. from the University of Science and Technology of China (USTC) in 2010, where she conducted pioneering research under the mentorship of Professor Hua Cui. Her doctoral studies focused on chemiluminescence and electrochemiluminescence, areas in which she made significant contributions, particularly in the exploration of nanomaterial-involved chemiluminescence. Prior to her Ph.D., Dr. Li completed her Bachelor of Arts in Chemistry at USTC in 2005, under the guidance of Professor Chunhua Chen. During her undergraduate years, she was involved in innovative research on lithium-ion batteries, specifically focusing on the synthesis and characterization of cathode materials. Her comprehensive educational background has equipped her with the expertise and knowledge necessary for her subsequent career in academia and research, establishing her as a leading figure in the field of energy resources and nanotechnology.
Professional Experience
Professor Dr. Na Li has an extensive academic and research career, currently serving as a Professor in the Department of Energy Resources at Chengdu University of Technology since 2023. Prior to this role, she held the position of Associate Professor from 2018 to 2023 and Assistant Professor from 2013 to 2018 in the same department. Her research has focused on advanced nanotechnology applications in energy resources, particularly in constructing multifunctional nano-tracer systems for fracture monitoring and developing novel imaging methods for geological materials. She has led several significant projects funded by national and provincial foundations, contributing to advancements in shale micropore characterization and hydraulic fracture analysis. Before joining Chengdu University, Dr. Li gained valuable experience as a Research Fellow at the China National Analytical Center in Guangzhou, where she specialized in nanomaterial-involved chemiluminescence and its analytical applications. Her career is marked by her dedication to research and teaching, making her a prominent figure in her field.
Professor Dr. Na Li’s research interests lie at the intersection of analytical chemistry, nanotechnology, and energy resources. Her work primarily focuses on the development of multifunctional nanomaterials and tracers for applications in energy resource exploration, specifically in hydraulic fracturing and oil production monitoring. She has pioneered the construction of nano-tracer systems for fracture monitoring and fluid contribution analysis, which are crucial for enhancing the efficiency of oil recovery. Additionally, her research delves into the synthesis and characterization of nanoparticles for imaging micropore structures in geological materials, aiming to improve the understanding of subsurface reservoir characteristics. Dr. Li is also engaged in the development of chemiluminescence-based analytical techniques and the study of nanomaterial-involved reactions, expanding the applications of nanotechnology in environmental and chemical analyses. Her innovative work has significant implications for energy resources, environmental health, and advanced material science.
Professor Na Li is renowned for her extensive expertise in several advanced research domains. Her skills encompass the development of multifunctional nano-tracer systems, essential for fracture monitoring and geological imaging. With a solid foundation in analytical chemistry and nanomaterial applications, she excels in synthesizing and characterizing nanoparticles, including metal and magnetic bi-nanoparticles for enhanced imaging techniques. Her proficiency extends to utilizing advanced methods such as GC/MS-MS for biomarker analysis and rapid quantitative detection in shale and other geological materials. Her research also covers the application of chemiluminescence and electrochemiluminescence in bioassays and environmental analysis. As a principal investigator on various high-impact projects, Professor Li’s abilities include advanced tracer technology for oilfields, DNA tracer systems, and nanoparticle-enhanced imaging methods. Her contributions significantly advance the understanding of environmental health and material characterization through innovative analytical techniques.
Awards and Recognition
Na Li has received several prestigious awards, including the 2nd Prize of the 2022 China Association for Instrumental Analysis Science and Technology Award, and the 2019 High-level Overseas Studying Talents of Sichuan Province. These accolades highlight her excellence in research and contributions to her field.
Conclusion
Na Li’s extensive research in analytical chemistry, nanomaterials, and energy resources, combined with her collaborative efforts and numerous awards, make her a strong candidate for the Best Researcher Award. Her work has not only advanced scientific knowledge but also provided practical solutions in the energy sector, with potential applications in environmental health and beyond.
Publications Top Notes
- A strategy to build a library of oil tracers by oleophilic silica-encapsulated DNA nanoparticles
- Authors: J. Deng, N. Li, S. Yang, X. Ye, C. Li
- Year: 2024
- Novel oleophilic tracer-slow-released proppant for monitoring the oil production contribution
- Authors: Z. Gong, N. Li, W. Kang, Y. Wu, X. Liu
- Year: 2024
- Citations: 1
- Magnetic nano-Fe3O4-based oleophilic tracer for stability studies of nano-tracer in oilfields condition
- Authors: Z. Gong, N. Li, M. Qin, W. Kang, S. Yang
- Year: 2024
- Citations: 1
- Lithofacies identification of shale formation based on mineral content regression using LightGBM algorithm: A case study in the Luzhou block, South Sichuan Basin, China
- Authors: Y. Liu, R. Zhu, S. Zhai, N. Li, C. Li
- Year: 2023
- Citations: 2
- Release kinetics of rare earth tracer from polymer-coated proppants for hydraulic fracture analysis
- Authors: N. Li, Q. Cheng, Z. Gong, X. Liu, C.-Y. Li
- Year: 2023
- Citations: 1
- Organic geochemical characteristics and organic matter accumulation of the Eocene lacustrine source rock in the Yingxi area, Western Qaidam Basin, China
- Authors: F. Yi, H. Yi, C. Mu, J. Wu, G. Xia
- Year: 2023
- Citations: 2
- Genetic Relationship between Mississippi Valley-Type Pb–Zn Mineralization and Hydrocarbon Accumulation in the Wusihe Deposits, Southwestern Margin of the Sichuan Basin, China
- Authors: G. Wang, Q. Lei, Z. Huang, N. Li, J. Liu
- Year: 2022
- Citations: 2
- Background-Free Deep Fluorescent Imaging of a Pore Architecture in Geomaterials Based on Magnetic Upconversion Nanoprobes
- Authors: Q. Chen, N. Li, W. Kang, H. Xu, C.-Y. Li
- Year: 2022
- Genetic link between Mississippi Valley-Type (MVT) Zn-Pb mineralization and hydrocarbon accumulation in the Nanmushu, northern margin of Sichuan Basin, SW China
- Authors: Z. Huang, G. Wang, N. Li, Q. Lei, X. Mao
- Year: 2021
- Citations: 7
- Factors controlling the organic matter accumulation across the Pliensbachian-Toarcian transition in the Qiangtang Basin, Tibetan Plateau
- Authors: F. Yi, H. Yi, G. Xia, Z. Cai, N. Li
- Year: 2021
- Citations: 4