网上投注时时彩-网上投注体育彩票_正品百家乐玩法_全讯网六肖 (中国)·官方网站

搜索
學術
講座

新加坡國立大學Prof. Jianyong Ouyang學術講座

2024.12.13 瀏覽量:

時間 : 2024年12月16日 16時30分

地點 : 能源與動力工程學院301會議室

Conducting Polymers for Flexible and Wearable Electronics

主講人 : Prof. Jianyong Ouyang

High conductivity, high mechanical flexibility/stretchabbility and even self adhesiveness are required for conductors in the areas of flexible and wearable electronics. However, conventional conductors like  ls and inorganic semiconductors have very limited flexibility and stretchability, and they are not self-adhesive. Conducting polymers like PEDOT:PSS can have high mechanical flexibility, but they have limited stretchability and they are not self-adhesive. Here, Reporter will present some of our results on developing highly conductive, highly stretchable and self-adhesive conducting polymers. Reporter also demonstrated their applications, including flexible transparent electrodes of optoelectronic devices like organic solar cells and perovskite solar cells, compliant dry electrodes of soft robots and dry electrodes for the detection of epidermal biopotential signals including electrocardiogram (ECG), electromyogram (EMG) and electroencephalogram (EEG). Because they can always form conformal contact to skin and detect high-quality biopotential signals even during body movement, they can be used for continuous healthcare monitoring for long terms.


主講人簡介:

Prof. Ouyang received his PhD, master and bachelor degrees from the Institute for Molecular Science in Japan, Institute of Chemistry of the Chinese Academy of Sciences, and Tsinghua University in Beijing, respectively. He is currently a professor at the Department of Materials Science & Engineering, National University of Singapore. His research interests include flexible electronics and energy materials and devices. He invented the first polymer/nanoparticle memristor (2004), the first hybrid ionic/electronic thermoelectric converter (2020), the first adhesive intrinsically conducting polymers (2020), and topographic scanning electron microscopy (SEM) (2024), demonstrated the first application of flexible strain sensors for food processing monitoring (2021), observed the ductilization of polymers for the first time (2022), and continually reported world-record conductivities and thermoelectric properties of solution-processable conducting polymers and world-record thermoelectric properties of ionic conductors.

編輯:曹蔚

責編:韋麗

k7娱乐城官网| 回力百家乐官网的玩法技巧和规则| 广州百家乐官网赌场| 大西洋娱乐城| 百家乐官网娱乐皇冠世界杯| 百家乐盛大娱乐城城| 百家乐官网策略详解| 百家乐赌博策略大全| 真钱游戏| 百家乐平台注册送彩金| 百家乐官网网上技巧| 百家乐国际娱乐网| 百家乐官网怎么出千| 永利博百家乐的玩法技巧和规则| 姚记娱乐城信誉最好| 百家乐押注最多是多少| 百家乐官网赌博工具| 百家乐官网技术秘籍| 盐城棋牌游戏中心| 网上玩百家乐犯法| 网上百家乐官网哪里| 大发888游戏黄金之旅| 名仕百家乐官网的玩法技巧和规则 | 大发888游戏官方网站| 钱隆百家乐官网的玩法技巧和规则 | 澳门百家乐官网要注意啥| 百家乐官网网站赌博| 棋牌娱乐城注册送58| 德州扑克胜率计算器| 大发888新闻| 足球百家乐系统| 做生意怎么看风水| 百家乐官网真人游戏娱乐| 澳门百家乐官网真人娱乐城| 南非太阳城皇宫酒店| 百家乐喜牛| 百家乐赌机玩法| 百家乐官网软件| 百家乐官网游戏怎么刷钱| 网上大发扑克| 大发888娱乐城英皇国际|