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Large-area flexible monolithic ITO/WO3/Nb2O5/NiVO chi/ITO electrochromic devices prepared by using magnetron sputter deposition

机译:磁控溅射沉积制备大面积柔性单片ITO / WO3 / Nb2O5 / NiVO chi / ITO电致变色器件

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Electrochromic devices (ECDs) have been applied in smart windows to control the transmission of sunlight in green buildings, saving up to 40-50% electricity consumption and ultimately reducing carbon dioxide emissions. However, the high manufacturing costs and difficulty of transportation of conventional massive large area ECDs has limited widespread applications. A unique design replacing the glass substrate commonly used in the ECD windows with inexpensive, light-weight and flexible polymeric substrate materials would accelerate EC adoption allowing them to be supplemented for regular windows without altering window construction. In this study, an ITO/WO3/Nb2O5/NiVO chi/ITO all-solid-state monolithic ECD with an effective area of 24 cm x 18 cm is successfully integrated on a PET substrate by using magnetron sputter deposition. The electrochromic performance and bending durability of the resultant material are also investigated. The experimental results indicate that the ultimate response times for the prepared ECD is 6 s for coloring at an applied voltage of -3 V and 5 s for bleaching at an applied voltage of +3 V, respectively. The optical transmittances for the bleached and colored state at a wavelength of 633 nm are 53% and 11%, respectively. The prepared ECD can sustain over 8000 repeated coloring and bleaching cycles, as well as tolerate a bending radius of curvature of 7.5 cm. (C) 2016 Elsevier B.V. All rights reserved.
机译:电致变色设备(ECD)已应用于智能窗户中,以控制绿色建筑中阳光的透射,从而节省多达40-50%的电力消耗并最终减少二氧化碳排放量。然而,常规的大面积ECD的高制造成本和运输困难限制了广泛的应用。独特的设计以廉价,轻巧和柔软的聚合物基板材料代替了ECD窗户中常用的玻璃基板,将加速EC的采用,从而使它们成为常规窗户的补充,而不会改变窗户的结构。在这项研究中,使用磁控溅射沉积技术将有效面积为24 cm x 18 cm的ITO / WO3 / Nb2O5 / NiVO chi / ITO全固态整体式ECD成功地集成在PET基板上。还研究了所得材料的电致变色性能和弯曲耐久性。实验结果表明,制备的ECD的最终响应时间分别为:在-3 V的施加电压下着色为6 s和在+3 V的施加电压下漂白为5 s。在633nm的波长处的漂白态和着色态的透光率分别为53%和11%。制备的ECD可以承受8000多次重复的着色和漂白循环,并且可以承受7.5 cm的弯曲曲率半径。 (C)2016 Elsevier B.V.保留所有权利。

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