编号 | 时间 | 类型 | 题目 | 讲者 | 单位 |
---|---|---|---|---|---|
08:30-08:50 | 邀请报告 |
高比能电池功能电解液 |
黄云辉 | 华中科技大学 | |
Invited |
Functional Electrolytes for the Rechargeable Batteries with High Energy Density |
Yunhui Huang | |||
08:50-09:10 | 邀请报告 |
锂电池的电解质/电极界面 |
邓永红 | 南方科技大学 | |
Invited |
Electrolyte/Electrode Interface of the Lithium-Based Batteries |
Yonghong Deng | |||
09:10-09:30 | 邀请报告 |
可充电电池的高安全性电解质 |
陈仕谋 | 北京化工大学 | |
Invited |
High Safety Electrolytes for Rechargeable Batteries |
Shimou Chen | |||
09:30-09:50 | 邀请报告 |
新宙邦电解液国际引领战略规划 |
钱韫娴 | 深圳新宙邦科技股份有限公司 | |
Invited |
The International Strategic Planning of Capchem Electrolyte |
Wenxian Qian | |||
09:50-10:10 | 邀请报告 |
高安全锂电池电解质设计策略 |
郑奇峰 | 华南师范大学 | |
Invited |
Electrolyte Design Strategies for Lithium Batteries with High Safety |
Qifeng Zheng |
编号 | 时间 | 类型 | 题目 | 讲者 | 单位 |
---|---|---|---|---|---|
10:30-10:50 | 邀请报告 |
基于二维正交设计的锂电池电解液 |
谢佳 | 华中科技大学 | |
Invited |
Two Dimension Electrolyte Design for Lithium Batteries |
Jia Xie | |||
10:50-11:10 | 邀请报告 |
金属空气电池材料和器件的构建 |
徐吉静 | 吉林大学 | |
Invited |
Construction of Materials and Devices for Metal-air Batteries |
Jijing Xu | |||
11:10-11:30 | 邀请报告 |
电池材料的高通量研发装备与发展趋势 |
夏利 | 深圳市科晶智达科技有限公司 | |
Invited |
High Throughput Battery Material R&D Equipment and Development Trend |
Li Xia | |||
11:30-11:50 | 邀请报告 |
锂金属电池聚合物电解质的设计与制备 |
刘瑞平 | 中国矿业大学(北京) | |
Invited |
Design and Preparation of Polymer Electrolytes for Lithium Metal Batteries |
Ruiping Liu |
编号 | 时间 | 类型 | 题目 | 讲者 | 单位 |
---|---|---|---|---|---|
13:30-13:50 | 邀请报告 |
固态电池离子输运通量提升策略 |
贺艳兵 | 清华大学深圳国际研究生院 | |
Invited |
Strategy for Improving the Ion Transport Throughput in Solid-State Lithium Batteries |
Yanbing HE | Tsinghua University | ||
13:50-14:10 | 邀请报告 |
固体电解质助力高能量密度高安全锂电池 |
郭向欣 | 青岛大学 | |
Invited |
High-energy-density and high-safety lithium batteries enabled by introduction of solid electrolytes |
Xiangxin Guo | |||
14:10-14:30 | 邀请报告 |
锂电池准固态聚合物电解质的设计 |
潘安强 | 中南大学 | |
Invited |
The design of quasi-solid polymer electrolyte for lithium batteries |
Anqiang Pan | |||
14:30-14:50 | 邀请报告 |
干法电池隔膜现状和未来发展趋势 |
李昭 | 深圳中兴新材技术股份有限公司 | |
Invited |
Dry Process Lithium Ion Battery Separator: Present Status and Future Prospects |
Zhao Li | |||
14:50-15:10 | 邀请报告 |
锂金属电池的复合固态电解质界面结构调控策略 |
陈楠 | 北京理工大学 | |
Invited |
Interface Design in Composite Solid Electrolytes for Lithium Metal Batteries |
Nan Chen | Beijing Institute of Technology |
编号 | 时间 | 类型 | 题目 | 讲者 | 单位 |
---|---|---|---|---|---|
15:30-15:50 | 邀请报告 |
锂金属电池聚合物电解质 |
陈立宝 | 中南大学 | |
Invited |
Polymer Materials for Lithium Metal Battery Electrolytes |
Libao Chen | |||
15:50-16:10 | 邀请报告 |
基于先进光纤传感技术的电池原位检测研究 |
郭团 | 暨南大学 | |
Invited |
Operando Battery Monitoring Using Lab-on-Fiber Optical Sensing Technologies |
Tuan Guo | |||
16:10-16:30 | 邀请报告 |
光热刺激响应电解质与储能性质研究 |
王彩虹 | 四川大学 | |
Invited |
Thermoresponsive Electrolytes Applied in Energy Storage Devices |
Caihong Wang | |||
16:30-16:50 | 邀请报告 |
LiCl界面: 稳定Li3InCl6和锂负极的界面 |
王畅豪 | 之江实验室 | |
Invited |
LiCl Interlayer: Stabilizing the Li3InCl6 and Li Anode Interface |
Changhao Wang |
编号 | 时间 | 类型 | 题目 | 讲者 | 单位 |
---|---|---|---|---|---|
01-P01 | 17:10-17:11 | 墙报 |
Smectic solid electrolytes containing lamellar conducting channels for solvent-free lithium-ion batteries with a thermal switch on/off performance |
卢凯 | 四川大学化工学院 |
Poster |
Smectic solid electrolytes containing lamellar conducting channels for solvent-free lithium-ion batteries with a thermal switch on/off performance |
Kai Lu | |||
01-P02 | 17:11-17:12 | 墙报 |
Lyotropic Lamellar Nanostructures Enabled High-Voltage Windows, Efficient Charge Transport, and Thermally Safe Solid-State Electrolytes for Lithium-Ion Batteries. |
阮昊 | Sichuan University |
Poster |
Lyotropic Lamellar Nanostructures Enabled High-Voltage Windows, Efficient Charge Transport, and Thermally Safe Solid-State Electrolytes for Lithium-Ion Batteries. |
Hao Ruan | |||
01-P03 | 17:12-17:13 | 墙报 |
Pre-Oxidized and Composite Strategy Greatly Boosts Performance of Polyacrylonitrile/LLZO Nanofibers for Lithium-Metal Batteries |
芦志奇 | 北京化工大学 |
Poster |
Pre-Oxidized and Composite Strategy Greatly Boosts Performance of Polyacrylonitrile/LLZO Nanofibers for Lithium-Metal Batteries |
Zhiqi Lu |