最新网络赌博网站-国际网络赌博网

今天是
今日新發布通知公告0條 | 上傳規范

【百家大講堂】第280期:金屬離子電池的先進電極材料

發布日期:2019-11-09

講座題目:金屬離子電池的先進電極材料 Advanced Electrode Materials for Metal-ion Batteries

報 告 人:Zaiping Guo

時   間:2019年11月12日(周二)10:00-12:00

地   點:中關村校區研究生教學樓207室

主辦單位:研究生院、材料學院

報名方式:登錄北京理工大學微信企業號---第二課堂---課程報名中選擇“【百家大講堂】第280期:金屬離子電池的先進電極材料”

【主講人簡介】

Prof. Zaiping Guo received a PhD in Materials Engineering from the University of Wollongong in December 2003. She is a Distinguished Professor in the school of Mechanical, Materials, and Mechatronic Engineering, University of Wollongong, and an Associate Editor of ACS Applied Materials & Interfaces. She received the ARC Queen Elizabeth II Fellowship in 2010, and the ARC Future Fellowship (FT3) in 2015. Her research focuses on the design and application of nanomaterials for energy storage and conversion, including rechargeable batteries, hydrogen storage, and fuel cells. She published more than 400 papers in peer-reviewed Journals, more than 150 papers were published in journals with IF > 10, and these publications have been cited >21,000 times with an h-index of 78. 

 

【講座信息】

Energy storage is an important problem to realize low carbon society and there have been many challenges. Metal-ion batteries have attracted remarkable attention recently due to the high energy storage demands.  The requirement of feasible electrode materials with high capacity and good cycling stability has promoted the exploration of various electrode materials for metal ion batteries. Materials engineering plays a key role in the field of battery research. In particular, engineering materials at the nanoscale offers unique properties resulting in high performance electrodes in various energy storage devices. Consequently, considerable efforts have been made in recent years to fulfil the future requirements of electrochemical energy storage devices. Various multi-functional hybrid nanostructured materials are currently being studied to improve energy and power densities of next generation batteries.  In this talk, I will present some of our recent progress in the synthesis of different types of hybrid nanostructures to enhance the electrochemical energy storage properties of metal-ion battery.


百家乐官网桌布橡胶| 视频百家乐网站| 百家乐官网平台哪个有在线支付呢| 大发888在线娱乐城合营商| 百家乐分析网| 九龙城区| 百家乐官网注册彩金| 威尼斯人娱乐城老牌| 大赢家博彩网| 伟博百家乐官网现金网| 百家乐官网视频双扣下载| 丽星百家乐官网的玩法技巧和规则| 娱乐网百家乐官网补丁| 澳门百家乐官网棋牌游戏| tt百家乐官网的玩法技巧和规则| 莱州市| 游戏机百家乐官网的技术| 百家乐必胜打| 希尔顿百家乐官网娱乐城 | 百家乐官网磁力录| 如何玩百家乐游戏| 澳门百家乐官网骗人| 大发888棋牌下载| 永清县| 百家乐返点| 十三张百家乐官网的玩法技巧和规则 | 温州百家乐官网的玩法技巧和规则| 犹太人百家乐的玩法技巧和规则| 大发888更名网址6| 百家乐投注技巧公式| 百家乐官网平台那家好| 百家乐庄和闲的赌法| 免费百家乐官网追号软件| 中国德州扑克比赛| 百家乐筹码托盘| 百家乐倍投工具| 百家乐龙虎玩| 实战百家乐十大取胜原因百分百战胜百家乐不买币不吹牛只你能做到按我说的.百家乐基本规则 | 永春县| 玩百家乐官网新澳门娱乐城 | 菲律宾在线游戏|