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Partly covered photoelectrochromic devices with enhanced coloration speed and efficiency

机译:部分覆盖的光电致变色器件,具有提高的着色速度和效率

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摘要

This work comprises an experimental study of photoelectrochromic (PEC) devices for dynamic solar control in buildings. In an effort to overcome the performance limitations of fully covered PEC devices in which a thin, transparent TiO_2 layer covers the entire device area, we have developed the partly covered PEC type, with an opaque 5 μm thick TiO _2 film covering only a fraction of WO_3 area on one end of the device. It was found that the partly covered devices are transparent in the visible (with luminous transmittance up to 51%), exhibit rapid coloration (~3 min) upon solar irradiation in open circuit conditions and achieve a considerable transmittance modulation (up to 10.2:1). Various TiO_2 to WO_3 area ratios were tried ranging from 0.23 to 0.48. Reduction of the area ratio decreases the speed of coloration but it does not affect neither the coloration homogeneity nor the end coloration result. Use of the N3 Ruthenium dye has led to substantial photo-coloration efficiencies (up to 4 times more than those achieved with Rhodamine B) and improved the durability of the devices.
机译:这项工作包括对建筑物中动态太阳光控制的光电致变色(PEC)设备的实验研究。为了克服完全覆盖的PEC器件的性能限制,在该器件中,薄的透明TiO_2层覆盖了整个器件区域,我们开发了部分覆盖的PEC型,其中不透明的5μm厚的TiO _2膜仅覆盖一部分设备一端的WO_3区域。发现部分覆盖的器件在可见光下是透明的(透光率高达51%),在开路条件下的太阳辐射下显示出快速的着色(〜3分钟),并实现了相当大的透光率调制(高达10.2:1) )。尝试了各种TiO_2与WO_3的面积比,范围为0.23至0.48。面积比的降低会降低着色速度,但不会影响着色均匀性和最终着色结果。 N3钌染料的使用带来了显着的光致着色效率(比若丹明B所达到的效率高4倍),并提高了设备​​的耐用性。

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