太阳城集团余文乐-澳门太阳城集团开户283su

學術信息

【航宇大講堂】Liquid structure in nano-space probed by x-ray scattering methods

發布時間:2021-06-09瀏覽次數:6338發布者:顏士軒來源:南京航空航天大學

報告題目:Liquid structure in nano-space probed by x-ray scattering methods

報告人: Prof. Milena Lippman(Deutsches Elektronen-Synchrotron DESY)

報告時間:2021年6月10日 15:15-18:15

報告地點:Zoom會議室ID:931 4731 9556 密碼:chemuser(https://desy.zoom.us/j/93147319556

主辦單位:航空學院、航空航天交叉研究院、國際合作處

報告內容摘要:

In this talk the properties of the condensed matter confined in a nano-space are of interest. Nano confinement provides possibilities towards controlling the structure of condensed matter on a molecular level. Bulk liquids, in comparison to the crystalline matter, exhibit only short-range order. The structural properties of nano-confined liquids significantly differ from their bulk counterpart. In other words, nano-confinement represents a natural control on nano-scale properties of fluids, with relevance to engineering of hybrid materials energy science clean water science, chemistry and biology. However, a fundamental understanding of the properties of confined fluids is still missing. Recent research has shown confinement-induced crystallization and strong modifications of the phase diagram and dynamics, which is different to the bulk and cannot be understood to-date. A large body of theoretical and simulation work as well as micro mechanical, electrical, electro chemical, and optical experiments contributed to understanding of confined fluids and hybrid materials. However, these findings are not supported by experiments sensitive to the atomic scale structure and dynamics. Towards this end, X-ray reflectivity, small-angle and wide angle scattering and diffraction methods with small beams and precision are suitable experimental approaches. Example of different setups applicable with those X-ray techniques are presented.

報告人簡介:

Milena Lippman currently is the Manager of the User Chemistry Laboratory and the Clean Room facility at PETRA III and FLASH at Deutsches Elektronen-Synchrotron DESY in Hamburg, Germany. She receives her first PhD degree in Sofia University, Bulgaria in 2001 in the field of soft matter bulk materials. During the first PhD work she attended a one-year course focused on Physics of the Polymer Materials at theInstitute of Macromolecular Chemistry, Laboratory of Neutron and X-ray diffraction, Prague, Czech Republic, supported by the UNESCOresearch Program. In 2000 started the second PhD work at RWTH Aachen University, Germany in cooperation with the Science Center Juelich in Germany and DESY. During that time, she was supporting the Wiggler Beamline at the Synchrotron radiation source DORIS in Hamburg, DESY. In 2006 after the defend of the second PhD work, she became a beamline scientist at High-Resolution Diffraction beamlines P08 at PETRA III with focus on planning, building and management of the user chemistry laboratory facilities. Her research interest is in the field ofsoft matter physics in bulk and thin films. In resent year her scientific work is focused on structure and properties of the condensed matter confined in small geometries.

百家乐官网免| 多伦多百家乐官网的玩法技巧和规则| 百家乐官网心得分享| 百家乐官网必赢| 太阳城二手房| 大发888怎么提款| 皇冠在线娱乐| 澳门百家乐官网赌客| 龙博百家乐官网的玩法技巧和规则 | 香港六合彩曾道人| 百家乐官网和的几率| 百家乐园36bol在线| 大赢家即时比分网| 百家乐官网赌神| 百家乐游戏下载| 娱乐城送18| 百家乐官网筹码方形| 电子百家乐打法| k7娱乐城官网| 新葡京百家乐官网的玩法技巧和规则 | 伊吾县| 正品百家乐官网地址| 百家乐真人游戏网| 百家乐第三张规则| 网络百家乐官网免费试玩| 百家乐出千手法| 游戏百家乐官网押发| 百家乐开户百家乐技巧| 德州扑克的规则| 盐城百家乐官网的玩法技巧和规则| 全讯网365| 扎鲁特旗| 云鼎百家乐官网的玩法技巧和规则| 大发888真钱客户端| 澳门百家乐官网下三路| 百家乐破解策略| 滦平县| 百家乐翻天粤语版| 灯塔市| A8百家乐娱乐平台| 伊宁县|