Using nanostructures to tailor thermal radiation for clean energy and clean water applications (Conference Presentation)

S. Boriskina, Gang Chen
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Abstract

This talk will introduce some of our recent work on using nanostructures to tailor thermal radiation with applications from solar and thermal energy for electrical generation and storage, to desalination. We fabricated solar photovolatic cells with efficiency >15% using 10 micron-thick crystalline silicon films. We demonstrated that aerogels can be used for concentrated solar thermal power, eliminating the need for vacuum and wavelength selective coatings. Photovoltaic cells can couple to terrestrial heat sources to convert thermal radiation into electricity, at an efficiency higher than photovoltaics. Moving to lower temperature range, we show that fabrics can be made to radiate out human body heat while remain opaque to visible light. We also demonstrate that by localizing solar energy on water surface, we can boil water and even achieve superheated steam under one sun. The talk will end with a discussion of the entropy of light and how we exploit the understanding to design better thermal-to-electrical energy converters.
利用纳米结构为清洁能源和清洁水应用量身定制热辐射(会议报告)
本讲座将介绍我们最近在利用纳米结构定制热辐射方面的一些工作,应用范围从太阳能和热能的发电和储存,到海水淡化。我们利用10微米厚的晶体硅薄膜制备了效率>15%的太阳能光伏电池。我们证明了气凝胶可以用于集中的太阳能热发电,消除了真空和波长选择涂层的需要。光伏电池可以与地面热源耦合,以比光伏电池更高的效率将热辐射转化为电能。移动到较低的温度范围,我们表明,织物可以辐射人体的热量,同时保持不透明的可见光。我们还证明,通过将太阳能定位在水面上,我们可以在一个太阳下烧开水,甚至实现过热蒸汽。讲座的最后将讨论光的熵,以及我们如何利用这一知识来设计更好的热能-电能转换器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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