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 
S14:Advanced Dielectrics for Energy Storage Applications

Dielectric capacitors, based on electric-field-induced polarization of dielectrics for energy storage, have attracted extensive attention worldwide in recent years, as they are essentially promising candidates in the areas including power electronics, high speed energy converting or buffering, back-up power sources, and hybrid electrical energy technologies. The dielectric material inside of a capacitor is critically responsible for its energy storage performance. The ongoing progress of capacitors requires the dielectrics to have some merits, e.g., high energy storage density and efficiency, good temperature stability, and long fatigue resistance, etc. Thanks to the continuous investment of researchers, great progresses have been achieved in recent years.
This symposium will address the latest progress of dielectric materials for energy storage applications, including discovery of new dielectric category (ferroelectrics, antiferroelectrics, relaxors, superparaelectrics, and a combination/mixture of them), development of novel structure, proposal of new designing concept, as well as the studies on various dimensions (bulk ceramic, film, and MLCC). The emerging methods for improving energy storage properties, from processing, characterization, to modeling and simulation are also included.

Focused topics:
1.New Ferroelectric/Antiferroelectric Materials for Energy Storage applications
2.Film/bulk/composite Ceramics for Energy Storage applications
3.MLCC for Energy Storage applications
4.Novel Processing Technologies of Dielectric Materials
5.Designing, Characterization, Modeling and Simulation of Dielectric Materials

Organizers:
Guorong Li, Shanghai Institute of Ceramics, CAS, China
Nengneng Luo, Guangxi University, China
Ruzhong Zuo, Hefei University Technology, China
Shujun Zhang, University of Wollongong, Australia
Xiaojie Lou, Xian Jiaotong University, China
Yang Shen, Tsinghua University, China
Fei Li, Xian Jiaotong University, China
Yu Huan, Jinan University, China
Jiangtao Zeng, Shanghai Institute of Ceramics, China
Gengshui Wang, Shanghai Institute of Ceramics, China
Jing-Feng Li, Tsinghua University, China
Xiaohui Wang, Tsinghua University, China
Dawei Wang, University of Sheffield, UK
Zhenxiang Cheng, Wollongong University, Australia
Haibo Zhang, Huazhong University of Science and Technology, China
Guangzu Zhang, Huazhong University of Science and Technology, China
Dou Zhang, South China University, China
Jungho Ryu, Yeungnam University, Republic of Korea
Barbara.Malic, Jožef Stefan Institute, Slovenia,
Zorica Branković, University of Belgrade, Serbia
He Qi, Hainan University, China

Point of Contact:
Nengneng Luo, Guangxi University, luonn1234@163.com
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 
S20.  Advances in Bioceramics 
S21.Data Driven and AI for Ceramics and Composites 
S22. Multifuctional Nanomaterials and Heterostructures for Sensing Devices
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