第十四届先进陶瓷国际会议
Invited Speakers
S1.先进结构陶瓷和复合材料前沿:从日常使用到极端高温
S2.纳米层状碳化物/氮化物/硼化物及其二维材料
S3. 聚合物前驱体陶瓷
S4. 陶瓷基复合材料前沿
S5. 多孔陶瓷及其在能源与环境中的应用
S6.  先进耐火材料与传统陶瓷
S7.  透明陶瓷与发光材料
S8. 新型陶瓷涂层与技术
S9.  粉体工艺与烧结前沿
S10.3D 打印和增材制造进展
S11.  热电材料与器件
S12. 铁电与压电陶瓷
S13.  铁电与多铁薄膜
S14.  先进储能电介质材料
S15.  新兴光伏材料和器件
S16. 高熵陶瓷:极端环境下设计、加工和应用的创新
S17.  陶瓷材料纳米级表征
S17: Nanoscale characterizations of ceramic materials

The nanoscale properties of ceramics play a crucial role in their functional performance across a wide range of applications, including electronics, energy storage, and biomedical devices. The symposium will cover recent advancements in structure and composition analysis, as well as testing and analysis of mechanical, electrical, and chemical properties for ceramic materials. The rapid advancement of scanning probe microscopy (SPM) techniques has significantly enhanced the nanoscale characterization of ceramics, offering unprecedented insights into their multifunctional properties. Transmission electron microscopy (TEM) techniques provide the capability to observe atomic-scale features, such as grain boundaries, defects, and phase transitions, which are essential for understanding the behavior of ceramics in different environments. These various advanced microscopy techniques offer a comprehensive approach to studying intricate microstructural features in ceramics and composites, enabling a profound understanding of their structure-property relationships. Other advanced characterization methods also include (synchrotron) X-ray and neutron diffraction, imaging and spectroscopy, vibrational spectroscopy (IR/Raman), optical imaging and spectroscopy, and related tools, which further expand the ability to probe ceramic properties at multiple length scales.

This symposium will bring together researchers who utilize and develop advanced characterization techniques to investigate nanoscale phenomena in ceramics. Topics of interest include, but are not limited to:
1.The latest advancements in SPM-based methodologies for characterizing electric, piezoelectric, magnetic, thermal, and optical properties at the nanoscale.
2.Applications of SPM in uncovering the fundamental properties of ceramic materials.
3.Structure analysis by X-ray, neutron, synchrotron and electron diffraction such as X-ray microscopy, tomography and ptychography based on Bragg diffraction, transmission and fluorescence contrast.
4.Development and application of advanced TEM/STEM and 4D-STEM techniques for studying the atomic structure, electronic structure, defect analysis, and grain boundary behavior in ceramics.
5.In situ TEM to study dynamic processes in ceramics, such as phase transitions, crack formation, and ion diffusion.
6.Integration of multi-modal microscopy techniques, including SPM, TEM, and other characterization methods for comprehensive analysis of ceramic materials.
7.Theoretical modeling, atomic-scale simulation, and machine learning approaches that provide deeper insights into nanoscale characterizations of ceramics.

Organizers:
Prof. Tao Li, Xian Jiaotong University, China
Prof. Boyuan Huang, Southern University of Science and Technology, China
Prof. Xiahan Sang, Wuhan University of Technology, China
Prof. Qiang Zheng, National Center for Nanoscience and Technology CAS, China
Prof. Yunseok Kim, Sungkyunkwan University, Korea
Prof. Qian Li, Tsinghua University, China

Point of Contact:
Qian Li, Tsinghua University, qianli_mse@tsinghua.edu.cn
S18. 微波介电陶瓷及其应用
S19.  离子及混合传导陶瓷
S20.  生物陶瓷前沿
S21.数据驱动和人工智能在陶瓷和复合材料中的应用
S22. 用于传感器件的多功能纳米材料和异质结构
专题首页

Copyright © 2018 . 中国硅酸盐学会版权所有