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A novel class of dye-sensitized solar modules. Glass-plastic structure for mechanically stable devices

机译:一种新型染料敏化太阳能模块。机械稳定装置的玻璃塑料结构

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Owing to its peculiar properties such as transparency, weak angle dependence and improved power conversion efficiency (PCE) at diffused light, DSSCs (Dye Sensitized Solar Cells) are well suited for Building Integrated PhotoVoltaic (BIPV). For large area DSSC devices and modules, one of the main causes of sealing failure is the deformation of the glass substrates due to the sintering process of TiO2which occurs significantly at temperatures around 500 °C. The novel class of realized DSSMs (Dye Sensitized Solar Modules) consists in a “Glass/Plastic hybrid” structure with a photo-electrode developed on glass-FTO and a counter-electrode developed on PET-ITO. By adopting this unique solution, it is possible to anneal the photo-electrode at temperatures above 500°C for an optimal TiO2sintering and to improve the sturdiness of the devices adapting the flexible counter-electrode on the rigid photo-electrode. Developing the counter-electrode on PET-ITO we halved the thickness and weight of the devices, strengthens the commitment of DSSC technology in BIPV sector where the weights and the volumes occupied by components play a fundamental role in design, fabrication and costs.
机译:由于其独特的性能,如透明性,弱角度依赖性和漫射光改进的功率转换效率(PCE),DSSC中(染料敏化太阳能电池)非常适用于光伏建筑一体化(BIPV)。对于大面积DSSC设备和模块,的密封失败的主要原因之一是在玻璃基板的变形,由于TiO 2的烧结过程 2 发生显著在约500℃的温度。新颖的类来实现的DSSMs(染料敏化太阳能电池组件)包括在“玻璃/塑料混合”与玻璃FTO和PET-ITO开发的反电极开发了一种照片电极结构。通过采用这种独特的解决方案,可以进行退火在温度高于500℃的光电极,以便获得最佳的TiO 2 烧结和改善适配在刚性光电极柔性反电极的设备的坚固性。制定关于PET-ITO反电极我们一半的设备的厚度和重量,增强了DSSC技术在BIPV领域在重量和体积所占的分量承诺发挥设计,制造和成本的基础性作用。

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