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工学院专题学术讲座 | Xianwen Mao 毛献文: Understanding electrochemical interfaces: insights from soft materials design and operando functional imaging
时间
2022年6月15日(周三)
上午9:00-10:30
地点
线上:ZOOM ID 842 9846 7603
主持
西湖大学工学院 陆启阳博士
受众
全体师生
分类
学术与研究
工学院专题学术讲座 | Xianwen Mao 毛献文: Understanding electrochemical interfaces: insights from soft materials design and operando functional imaging
时间:2022年6月15日(周三)上午9:00-10:30
Time: 9:00-10:30 am, Wednesday, June 15, 2022
线上:ZOOM ID 842 9846 7603
Online: ZOOM ID 842 9846 7603
主持人: 西湖大学工学院 陆启阳博士
Host: Qiyang Lu, Assistant Professor, Westlake University
主讲嘉宾/Speaker:

Prof. Xianwen Mao
Assistant Professor
Materials Science and Engineering
National University of Singapore
主讲人简介/Biography:
Xianwen Mao is an assistant professor of materials science and engineering at NUS. He obtained a Bachelor in Polymer Materials and Engineering from Tsinghua University and a PhD in Chemical Engineering from Massachusetts Institute of Technology. During his PhD, Xianwen also worked as a research intern at Novartis Vaccines and Diagnostics in Italy and National Renewable Energy Laboratory in the US. His PhD work focused on molecular engineering of soft materials with tunable catalytic and adsorptive properties for sustainability technologies. His postdoctoral research at Cornell was centered around developing single-molecule/particle techniques for operando functional imaging of complex energy materials. Dr. Mao has filed 7 patents, and his research works and technological innovations have been frequently featured in news media such as New York Times and Chemical & Engineering News.
讲座摘要/Abstract:
Electrochemical interfaces have continued to play critical roles in modern technologies that promise to tackle some of the world’s most pressing challenges associated with climate change, renewable energy and clean water. In this talk, I will describe my research efforts in developing a deeper understanding of electrochemical interfaces for sustainability with insights gained from soft materials design and operando functional imaging. In the first part of my talk, I will discuss how nanostructuring in molecularly engineered soft materials governs their electrochemical performance, with a particular focus on the critical role of self-assembled nanostructures at electrified interfaces. In the second part of my talk, I will describe my efforts in developing operando functional imaging tools to understand materials chemistry and properties at the single-entity level (e.g., single particles, single interfaces, single cells, single polymers). I will focus on (photo)electrochemical catalytic properties of emerging materials important for energy and environmental applications. I will discuss in detail single-entity-level insights inaccessible from bulk-level, ensemble-averaged measurements.
讲座联系人/Contact:
朱云云
zhuyunyun@westlake.edu.cn
