第十四届先进陶瓷国际会议
Invited Speakers
S1.Frontiers in Advanced Structural Ceramics and composites: From Daily Use to Extreme Heat
S2.Nano-laminated Carbides, Nitrides and Borides and Their 2D Counterparts (MAX/MAB phases and MXenes/MBenes)
S3. Polymer-Derived Ceramics
S4. Advances in Ceramic Matrix Composites
S5. Porous Ceramics and Their Applications in Energy and Environment
S6.  Advanced Refractories and Traditional Ceramics 
S7.  Transparent Ceramics and Luminescent Materials
S8.  Novel Ceramic Coatings and Technology 
S9.  Advanced Powder Processing and Sintering
S10. Progress in 3D Printing and Additive Manufacturing
S11.  Thermoelectric Materials and Devices
S12. Ferroelectric and Piezoelectric Ceramics
S13.  Ferroelectric and Multiferroic thin films
S14.  Advanced Dielectrics for Energy Storage Applications 
S15. Emerging Photovoltaic Materials and Devices
S16. High-Entropy Ceramics: Innovations in Design, Processing, and Applications for Extreme Environments
S17.  Nanoscale Characterization of Ceramic materials
S18. Microwave Dielectric Ceramics and applications
S19.  Ionic and Mixed Conducting Ceramics 
S19:Ionic and mixed conducting ceramics

Ceramic materials that are ionic conductors or exhibit simultaneous ionic and electronic conduction have been attracting extensive attention worldwide in the recent years due to their scientific and practical significance in emerging technologies such as solid-state batteries, fuel cells, electrolyzers, and sensors. The chemical functionality of ionic and mixed conducting ceramics originate from equilibrium and non-equilibrium defects in the lattice and at interfaces, and enables unique capabilities for ion/charge/mass transport and electrochemical reactions. These materials offer high promise for future applications, for example, eliminating flammable components in high-energy-density batteries, and harnessing natural hydrocarbon energy resources through efficient environmental friendly methods.
This symposium seeks to cover both scientific fundamentals and technological applications of ionic and mixed conducting ceramics and their composites, thus bridging materials theory, simulations, advanced characterizations, functional properties and real-world applications. It will provide a platform for in-depth discussions and exchange of knowledges among researchers exploring solid state ionics in ceramic-based materials on different contexts and diverse applications.

Proposed sessions
1.Defects mechanisms and engineering in ionic and mixed conducting ceramics
2.Ionic transport and mechanisms in ionic and mixed conducting ceramics
3.Electrochemical interfaces in solid state ionic devices
4.Nanoionics: mass and charge transport in the nanoscale
5.Ceramics for green energy, hydrogen and fuels - Fuel cells, electrolyzers, membrane reactors
6.Solid state (secondary) batteries for energy storage
7.Chemical and solid state Sensors
8.Applications of novel characterization techniques in ionic and mixed conducting ceramic materials and devices

Organizers
Zhaoyin Wen, Shanghai Institute of Ceramics, Chinese Academy of Science, China
Minfang Han, Tsinghua University, China
Yunhui Huang, Huazhong University of Science and Technology, China
Qiang Zhang, Tsinghua University, China
Xianwen Mao, National University of Singapore, Singapore
Nobuyuki Imanishi, Mia University, Japan
Sebastian Molin, Gdańsk University of Technology, Poland
Yan Chen, South China University of Technology, China
Qiyang Lu, Westlake University, China
Ji Wu, Queen Mary University of London, UK
Lei Yao, Shenzhen University, China
Wei Liu, ShanghaiTech University, China
Na Ni(Points of Contact), Shanghai Jiao Tong University, China, na.ni@sjtu.edu.cn
S20.  Advances in Bioceramics 
S21.Data Driven and AI for Ceramics and Composites 
S22. Multifuctional Nanomaterials and Heterostructures for Sensing Devices
Back

Copyright © 2018 . The Chinese Ceramic Society All rights reserved.