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【低维量子物理国家重点实验室杰出学者讲座】新型层间量子拖拽效应
NHC Catalysis, Medicines and Agrochemicals
Bio-inspired nanostructures for targeted delivery of macromolecules
学堂班系列讲座:“分子定制介孔晶体”
报告题目:
清华大学材料科学与工程研究院《材料科学论坛》:Big-data, multi-channel 4D STEM with Ptychography
 报告人:
王鹏教授
(南京大学)
报告时间:
2019-11-13 16:00
报告地点:
清华大学主楼11区(东配楼)二层,电子显微镜中心会议室228房间
主办单位:
材料院《材料科学论坛》:朱静院士 62794026
  简介:

清华大学材料科学与工程研究院《材料科学论坛》

报告题目:Big-data, multi-channel 4D STEM with Ptychography

报告人:王鹏教授(南京大学)

报告时间:2019年11月13日(周三) 下午16:00-17:30

报告地点:清华大学主楼11区(东配楼)二层,电子显微镜中心会议室228房间

联系人:朱静教授 62794026

欢迎广大师生踊跃参加!

报告摘要:
Since the development of aberration correctors and electron optical components, scanning transmission electron microscopy (STEM) has become a widely used and powerful technique for materials science research. However, there are still remaining challenging in many areas, such as super-resolution, beam sensitive materials characterization and three-dimensional quantitative imaging. In this talk, we will show that among a number of emerged new techniques, electron ptychography is a great candidate for tackling these challenges due to its potential for super-resolution imaging, high-contrast light-element detecting, low-dose imaging, 3D optical sectioning and coupling to spectroscopic data acquisition based upon a large-scale dataset in 4D-STEM experiments enabled with a new generation of high speed and efficient direct electron detectors.

报告人简介:
Professor Peng Wang received his Ph.D degree in Engineering from University of Liverpool, UK in 2006. He was a research associate at SuperSTEM Laboratory in UK from 2007 to 2008. From 2008 to 2012 he worked as a research fellow in electron microscopy group at Oxford University. He joined Nanjing University (NJU), China as a Professor in 2012 and setup Nanjing Sub-atomic Resolution EM Laboratory in NJU. Prof. Wang's research interests have been in the applications of aberration corrected scanning transmission electron microscopy (STEM) imaging and electron energy loss spectroscopy to characterize materials at nano and atomic scales from two to three dimensions. He had developed a technique of 3D imaging materials at the nano-scale using scanning confocal electron microscopy (SCEM) performed on a double aberration-corrected TEM. Currently he is focusing on developing an advanced coherent diffractive imaging technique, so called Ptychography. In last 5 years, he has published 61 peer-reviewed papers in journals, which contains 21 first or corresponding authored papers including Nature, Nature Electronics, Nature Communications and Physical Review Letters. He is a member of Institute of Physics (MInstP), Youth Committee of Chinese Materials Research Society (CMRS), Committee of Chinese Electron Microscopy Society and Committee of Chinese Crystallography Society.



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