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Photovoltachromic Device with a Micropatterned Bifunctional Counter Electrode

机译:具有微图案双功能对电极的光伏致变色器件

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A photovoltachromic window can potentially act as a smart glass skin which generates electric energy as a common dye-sensitized solar cell and, at the same time, control the incoming energy flux by reacting to even small modifications in the solar radiation intensity. We report here the successful implementation of a novel architecture of a photovoltachromic cell based on an engineered bifunctional counter electrode consisting of two physically separated platinum and tungsten oxide regions, which are arranged to form complementary comb-like patterns. Solar light is partially harvested by a dye-sensitized photoelectrode made on the front glass of the cell which fully overlaps a bifunctional counter electrode made on the back glass. When the cell is illuminated, the photovoltage drives electrons into the electrochromic stripes through the photoelectrochromic circuit and promotes the Li~+ diffusion towards the WO3 film, which thus turns into its colored state: a photocoloration efficiency of 17 cm~2 min~(-1) W~(-1) at a wavelength of 650 nm under 1.0 sun was reported along with fast response (coloration time <2 s and bleaching time <5 s). A fairly efficient photovoltaic functionality was also retained due to the copresence of the independently switchable micropatterned platinum electrode.
机译:光电致变色窗可以用作智能玻璃蒙皮,它可以像普通的染料敏化太阳能电池一样产生电能,同时可以通过对甚至很小的太阳辐射强度变化做出反应来控制入射能量通量。我们在此报告成功实现了基于工程双功能对电极的新型光电致变色电池架构,该双功能对电极由两个物理分隔的铂和氧化钨区域组成,形成互补的梳状图案。太阳光是通过在电池的前玻璃上制成的染料敏化光电极部分收集的,该电极与在后玻璃上制成的双功能对电极完全重叠。当电池被照亮时,光电压通过光致变色电路将电子驱动到电致变色条带中,并促进Li〜+向WO3膜的扩散,从而变为有色状态:光致变色效率为17 cm〜2 min〜(- 1)报道了在1.0太阳下650 nm波长处的W〜(-1)以及快速响应(着色时间<2 s和漂白时间<5 s)。由于可独立切换的微图案化铂电极的共存,还保留了相当有效的光伏功能。

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