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Academic Lecture--First-principles Calculation Characterization, Theoretical Design and Structure-activity Mechanism of New Condensed Materials

2018-11-06

主讲人 时间
地址
Theme: First-principles Calculation Characterization, Theoretical Design and Structure-activity Mechanism of New Condensed Materials
Speaker:
Prof. Neng Li
Host:
Research Scientist Xiaoguang Li
Location:
Room 716, Health Science Center of Shenzhen University
Time:
16:00, November 6th, 2018

Talk abstract:

Studies on the electronic scale mechanism of new photocatalytic materials are presented in this report. Through the theoretical design of materials, controllable preparation methods and the study on synergistic law, the innovation of material system, theoretical design and controllable preparation methods are realized, and the synergistic regulation of optical, electrical, thermal and chemical functions is developed, which promotes the development of design theory and controllable preparation method of new photocatalytic materials for energy-saving and environmental protection buildings. A series of studies also have been carried out on the luminescence mechanism and biological monitoring applications of new two-dimensional quantum dots, which promotes the further development of carbon quantum dots, MXene quantum dots and new two-dimensional material quantum dots.


Biography:
Neng Li is currently serving as a researcher at State Key Laboratory of Silicate Materials for Architectures of Wuhan University of Technology and a visiting professor at Department of Materials and Metallurgy of Cambridge University. He is the vice-chairman of Youth Committee of Solid Waste Branch of the Chinese Ceramic Society, the guest editor of Advance in Physical Chemistry, a Editorial Board member of Frontiers in Materials: Glass Science and a staff writer of Materials China. Prof. Li was selected into High-level Talents of Shenzhen (Peacock Project) in 2014 and awarded with Young Scholar Fellowship For International Studies by ACS in 2015. He has published nearly 70 articles in international academic journals, including Joule, chem, Energy & Environmental Science, ACS Nano, Materials Today Energy, Nano Energy, Materials Horizons, Applied Catalysis B: Environmental, J. Mater. Chem. A and Journal of American Ceramics Soiecty, over 1,700 citation with an H10-Index of 56.


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Shenzhen University

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