from    
to    
search  

 


AIR学术沙龙第36期|人工智能医疗保健和虚拟世界的可穿戴传感器和触觉技术
先立后破?实现双碳目标
迎接生物药制造的第四次浪潮-
支撑未来海量资源接入,电力系统通用信息模型(CIM)发展探讨
报告题目:
材料院《材料科学论坛》:Materials Design for Efficient and Stable Solar-to-Fuel Conversion
 报告人:
胡澍 助理教授
耶鲁大学
报告时间:
2017-03-24 15:00
报告地点:
清华大学材料院学术报告厅(逸夫技术科学楼1-205)
主办单位:
材料院《材料科学论坛》联系人:伍晖老师 62792396
  简介:

 

Abstract
Analogues to thin-film solar photovoltaics (PV), a solar-fuel membrane is a flexible, integrated photoelectrochemical (PEC) device that directly converts solar energy into H2 or liquid fuels, with inputs of sunlight, water and CO2 only.  Like its PV counterpart, it is designed with inherent cost advantages, and has the potential to break the cost paradigm of panel-based PEC devices or discrete PV connected to a fuel-forming electrolyzer.  However, achieving such a flexible solar-fuel membrane is not trivial.  Modeling and simulation play an important role in enabling continuous operation of such devices, as well as improving solar-to-hydrogen efficiency. 
In this talk, I will first address materials design for splitting water into H2 and O2.  Then, I will follow up with several key experimental investigation of protective coating and solid/liquid interfaces.  Although protective coatings are not prevalent in PV research, they contribute to an emerging field of PEC research and are essential because all technologically important semiconductors so far like Si and GaAs photocorrode.  With protective coating strategies, a 10% efficient water-splitting prototype has been demonstrated.  With modeling-inspired materials design, I will show a viable pathway beyond 20% efficiencies. 
Finally, I will discuss challenges and opportunities for advancing to particle-based solar fuel reactors.  I will conclude with an outlook for basic research needs of photocatalytic processes at solid/liquid interfaces. 
 
Speaker bio:
Shu Hu is an Assistant Professor of Chemical & Environmental Engineering at Yale University.  He is also affiliated with the Energy Science Institute at Yale West Campus.  Shu Hu graduated from Tsinghua University in 2006 and received his PhD degree of Materials Science and Engineering in 2011 from Stanford University, where he worked on nanoscale germanium crystal growth and epitaxy control.  He was then a postdoctoral scholar working with Professor Nate Lewis at California Institute of Technology and Joint Center for Artificial Photosynthesis, where his work spans fundamental and applied research areas in nanophotonics, nanoscale III-V growth and solid-electrolyte interfaces for artificial photosynthesis.  Dr. Hu has 5 issued patents, and is a co-author of over 30 peer-reviewed journal articles including Science, Nature Nanotechnology, Energy & Environmental Sciences and Nano Letters.  Dr. Hu has been awarded several honors for his work including the Stanford Graduate Fellowship Award, the MRS Graduate Student Gold Award and the Ross N. Tucker Award.  The experimental demonstration of protective coatings was reported in major media including NPR News, Scientific American, CE&N News, Nature, and highlighted in the US Department of Energy BES program report.


 

今日相关信息
材料院《材料科学论坛》:New domain sc...
Quantum Dynamics of Inflation
Probing Cosmic-ray in the Inner Galax...
环境学术沙龙第331期:Measurement of At...
Web of Science 核心数据库的检索与利用
 
同类别相关信息
配体保护的金纳米团簇的结构和性质的计算...
金属氮杂环卡宾催化的资源分子高值化反应
针对构型无序材料的理论方法发展与应用研...
自由基路径糖基化反应
大自然启发的表面物联网
学术活动