透射率
材料科学
光伏系统
甲胺
光电子学
离解(化学)
可见光谱
太阳能
化学
电气工程
有机化学
物理化学
工程类
作者
Lance M. Wheeler,David T. Moore,Rachelle Ihly,Noah J. Stanton,Elisa M. Miller,Robert C. Tenent,Jeffrey L. Blackburn,Nathan R. Neale
标识
DOI:10.1038/s41467-017-01842-4
摘要
Materials with switchable absorption properties have been widely used for smart window applications to reduce energy consumption and enhance occupant comfort in buildings. In this work, we combine the benefits of smart windows with energy conversion by producing a photovoltaic device with a switchable absorber layer that dynamically responds to sunlight. Upon illumination, photothermal heating switches the absorber layer-composed of a metal halide perovskite-methylamine complex-from a transparent state (68% visible transmittance) to an absorbing, photovoltaic colored state (less than 3% visible transmittance) due to dissociation of methylamine. After cooling, the methylamine complex is re-formed, returning the absorber layer to the transparent state in which the device acts as a window to visible light. The thermodynamics of switching and performance of the device are described. This work validates a photovoltaic window technology that circumvents the fundamental tradeoff between efficient solar conversion and high visible light transmittance that limits conventional semitransparent PV window designs.
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