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TiO_2 nanowires for potential facile integration of solar cells and electrochromic devices

机译:TiO_2纳米线可轻松集成太阳能电池和电致变色器件

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摘要

Self-powered systems usually consist of energy-acquisition components, energy-storage components and functional components. The development of nanoscience and nanotechnology has greatly improved the performance of all the components of self-powered systems. However, huge differences in the materials and configurations in the components cause large difficulties for integration and miniaturization of self-powered systems. Design and fabrication of different components in a self-powered system with the same or similar materials/configurations should be able to make the above goal easier. In this work, a proof-of-concept experiment involving an integrated self-powered color-changing system consisting of TiO_2 nanowire based sandwich dye-sensitized solar cells (DSSCs) and electrochromic devices (ECDs) is designed and demonstrated. When sunlight illuminates the entire system, the DSSCs generate electrical power and turn the ECD to a darker color, dimming the light; by switching the connection polarity of the DSSCs, the lighter color can be regained, implying the potential application of this self-powered color-changing system for next generation sun glasses and smart windows.
机译:自供电系统通常由能量获取组件,能量存储组件和功能组件组成。纳米科学和纳米技术的发展极大地提高了自供电系统所有组件的性能。但是,组件中材料和配置的巨大差异给自供电系统的集成和小型化带来了很大的困难。具有相同或相似材料/配置的自供电系统中不同组件的设计和制造应能够使上述目标变得更加容易。在这项工作中,设计并演示了涉及集成自供电换色系统的概念验证实验,该系统由基于TiO_2纳米线的三明治式染料敏化太阳能电池(DSSC)和电致变色器件(ECD)组成。当太阳光照亮整个系统时,DSSC会产生电能,并将ECD变成较暗的颜色,从而使光线变暗。通过切换DSSC的连接极性,可以恢复较浅的颜色,这意味着该自供电换色系统在下一代太阳镜和智能窗户中的潜在应用。

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