波音游戏平台下载-波音博彩广告网_百家乐园选_sz全讯网新2xb112 (中国)·官方网站

今天是
今日新發布通知公告1條 | 上傳規范

物理學院“博約學術論壇”系列報告 第 191 期 (2019年第 6期)

發布日期:2019-01-11

題目:2D thermoelectric materials: Role of the lattice thermal conductivity
報告人:Prof. Udo Schwingenschl?gl(King Abdullah University of Science and Technology, Saudi Arabia)
時  間:2019年1月16日(周三)上午 10:30
地  點:北京理工大學中心教學樓501,良鄉物理實驗中心229轉播

 

摘要 
We study the role of the lattice thermal conductivity in 2D thermoelectric materials by first-principles calculations. Specific examples include a comparison of Ti2CO2, Zr2CO2, and Hf2CO2 in order to evaluate the role of the metal atom. The lattice thermal conductivity is demonstrated to grow along the series Ti-Zr-Hf in the temperature range 300-700 K, resulting in the highest figure of merit in the case of Ti2CO2. Flat conduction bands promote the thermopower in the case of n-doping. Functionalization effects are studied for Sc2C, which is semiconducting for various functional groups, including O, F, and OH. The lowest lattice thermal conductivity is found for OH functionalization. Despite a relatively low thermopower, Sc2C(OH)2 therefore and due to a high electrical conductivity can be interesting for intermediate-temperature thermoelectric applications. We also discuss results on heterostructures built of MXenes and transition metal dichalcogenide monolayers. Low frequency optical phonons are found to occur as a consequence of the van der Waals bonding. They contribute significantly to the thermal transport and compensate for reduced contributions of the acoustic phonons (strong scattering in heterostructures), such that the thermal conductivities become similar to those of the constituent MXenes.

 

簡歷:
Dr. Schwingenschl?gl is a Professor of Materials Science & Engineering at King Abdullah University of Science and Technology (KAUST). His research interests in condensed matter physics and first-principles materials modeling focus on two-dimensional materials, interface and defect physics, correlated materials, thermoelectric materials, metal-ion batteries, nanoparticles, and quantum transport. Dr. Schwingenschl?gl joined KAUST as founding faculty member in 2008, having previously worked at the International Center of Condensed Matter Physics in Brasilia, Brazil, and the Universit?t Augsburg in Germany.

 

 

 

聯系方式:物理學院辦公室68913163
邀請人: 張用友
網    址:www.physics.bit.edu.cn


百家乐官网合作代打| 威尼斯人娱乐城游戏lm0| 百家乐官网返点| 百家乐桌游| 百家乐官网赔率技巧| 赌博百家乐官网赢不了| 百家乐官网路单走势图| 凯斯网百家乐的玩法技巧和规则 | 百家乐官网技巧真人荷官网| 大发888登陆网页游戏| 爱赢百家乐官网的玩法技巧和规则| 大发888游戏怎么玩| 百家乐打庄技巧| 新泰市| 百家乐相对策略| 景德镇市| 百家乐高手论| 百家乐官网如何盈利| a8娱乐城官方网站| 哪个百家乐网站最大| tt娱乐城官方网站| 太阳城百家乐如何看路| 菲律宾百家乐官网娱乐网| 大发888娱乐场下| 坐乾向巽24山向择吉| 定结县| 百家乐太阳城娱乐城| 百家乐官网群柏拉图软件| 澳门百家乐官网威尼斯| 大发888 赌场娱乐网规则| 百家乐平台哪个好本站所有数据都是网友推荐及提供 | 金山区| 老虎机破解| 百家乐冯氏坐庄法| 百家乐官网麻关于博彩投注| 大连百家乐食品| 赌博百家乐经验网| 视频百家乐官网代理| 唐海县| 免费百家乐计划| 澳门百家乐下注最低|