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Photoelectrochromic Devices with Enhanced Power Conversion Efficiency

机译:具有增强的功率转换效率的光电致变色器件

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摘要

In the present work, we propose a new architecture for partly covered photoelectrochromic devices with a modified anode layout, so that the TiO film is deposited first on the substrate, covering a small part of its surface, followed by the WO film that covers the remaining device area. As a result, the TiO film can be subjected to the proper thermal and chemical treatment without affecting the electrochromic performance of the WO film. The proposed design led to photoelectrochromic (PEC) devices with a power conversion efficiency (PCE) four times higher than that of typical partly covered devices, with a measured maximum of 4.9%. This, in turn, enabled a reduction in the total area covered by the photovoltaic unit of the devices by four times (to 5% from 20%), thus reducing its visual obstruction, without affecting the depth, uniformity and speed of coloration. A detailed study of the parameters affecting the performance of the new devices revealed that, with the cover ratio decreasing, PCE was increasing. The photocoloration efficiency also exhibited the same trend for cover ratio values below 15%. Storage of the devices in short circuit conditions was found to accelerate optical reversibility without affecting their photovoltaic and optical performance.
机译:在当前的工作中,我们提出了一种新的体系结构,用于部分覆盖的光电致变色器件,具有经过改进的阳极布局,以便首先将TiO膜沉积在衬底上,覆盖其表面的一小部分,然后再覆盖覆盖其余部分的WO膜设备区域。结果,可以在不影响WO膜的电致变色性能的情况下对TiO膜进行适当的热处理和化学处理。提出的设计导致光电致变色(PEC)器件的功率转换效率(PCE)比典型的部分覆盖器件高四倍,实测最大值为4.9%。继而,这使得装置的光伏单元所覆盖的总面积减少了四倍(从20%减少到5%),从而减少了其视觉障碍,而不会影响着色的深度,均匀性和速度。对影响新设备性能的参数进行的详细研究表明,随着覆盖率的降低,PCE不断增加。对于低于15%的覆盖率值,光致着色效率也表现出相同的趋势。发现将器件存储在短路条件下可加速光学可逆性,而不会影响其光电和光学性能。

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