首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Development of a new self-powered electrochromic device for light modulation without external power supply
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Development of a new self-powered electrochromic device for light modulation without external power supply

机译:无需外部电源即可开发用于光调制的新型自供电电致变色设备

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摘要

Despite considerable improvements within the last decades, electrochromic (EC) window coatings are still too expensive to be applied in buildings on a large scale. Beside the manufacturing costs, wiring costs have to be added which may exceed the fabrication expenses of the electrochromic window. Therefore, self-powered electrochromic windows have been considered, where a semi-transparent photovoltaic (PV) cell provides the power to activate an electrochromic system deposited on top of the solar cell. The whole PVEC device consists of up to eight layers which must be deposited on large scales without short circuits or other failures. Recently, we came up with a much simpler idea where power generation and electrochromic properties are combined rather than just added as in the case of the PVEC cell. The whole device now is obtained by the deposition of only three layers and is highly transparent in the bleached state. Exposing it to sunlight and completing an external circuit the device can be colored within a few minutes, reducing the transmission by about 40%. Bleaching occurs either spontaneously by blocking the sunlight or is induced by a small rechargeable battery which can be incorporated in the external circuit and is charged from the device when exposed to sunlight. (C) 1998 Elsevier Science B.V. All rights reserved. [References: 9]
机译:尽管在过去的几十年中取得了很大的进步,但电致变色(EC)窗户涂料仍然过于昂贵,无法大规模应用于建筑物。除了制造成本之外,还必须增加布线成本,这可能超过电致变色窗的制造成本。因此,已经考虑了自供电的电致变色窗,其中半透明的光伏(PV)电池提供功率来激活沉积在太阳能电池顶部的电致变色系统。整个PVEC器件最多由八层组成,这些层必须大规模沉积,而不会发生短路或其他故障。最近,我们提出了一个更简单的想法,其中将发电和电致变色性能结合在一起,而不是像在PVEC电池中那样只是增加了。现在,整个装置仅通过沉积三层而获得,并且在漂白状态下是高度透明的。将其暴露在阳光下并完成外部电路,可以在几分钟内为设备着色,从而将透射率降低约40%。漂白是通过阻挡阳光而自发发生的,或者是由小型可充电电池引起的,该电池可以装入外部电路中,并在暴露于阳光下时由设备充电。 (C)1998 Elsevier Science B.V.保留所有权利。 [参考:9]

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