首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >A WO3-poly(butyl viologen) layer-by-layer film/ruthenium purple film based electrochromic device switching by 1 volt application
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A WO3-poly(butyl viologen) layer-by-layer film/ruthenium purple film based electrochromic device switching by 1 volt application

机译:WO3聚(丁基紫胶)逐层膜/钌紫色膜电致变色器件的1伏开关

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A layer-by-layer (LbL) assembly of poly(butyl viologen) (PBV) and poly(peroxotungstate) was used for preparing a cathodically coloring dual electrochrome WO3-PBV film. A new formulation containing ferrocenecarboxaldehyde and potassium hexacyanoruthenate(II) was employed for the first time and anodically coloring ruthenium purple (RP) thin films were electrodeposited. X-ray photoelectron spectroscopy and Fourier transform infrared analyses confirmed the RP film structure to be an inorganic coordination polymer: K-x center dot Fe-x(III)[Ru-II(CN)(6)](y), wherein Fe3+ and Ru2+ color centers are flanked by CN- ligands. Nanoscale electrical conductivities determined by conducting atomic force microscopy were deduced to be 1.03 and 147.4 mS cm(-1), for the RP and WO3-PBV LbL films respectively, which confirmed their ability to function as mixed conductors, attributes pertinent during optical switching. Reversible bias induced transition between purple and colorless hues was attained in the RP film and between deep blue and colorless states was achieved for the WO3-PBV LbL film with coloration efficiencies of 188 and 380 cm(2) C-1 respectively. A complementarily coloring electrochromic device of WO3-PBV/RP was fabricated with an environmentally benign, inexpensive aqueous electrolyte, which switched between blue, purple, and colorless states. The device exhibited an electrochromic efficiency of 476 cm(2) C-1 at 580 nm, an outstanding transmission modulation of 49%, and short switching times (similar to 1 s); all under remarkably low operating voltages of +/- 1V. The WO3-PBV/RP device can deliver high optical contrast under low operating bias, and is highly scalable and durable, which demonstrates it to be ideal for practical optical switching devices like fast changing displays or smart windows. (C) 2014 Elsevier B.V. All rights reserved.
机译:聚(丁基紫精)(PBV)和聚(过氧钨酸盐)的逐层组装(LbL)用于制备阴极着色双电致变色WO3-PBV膜。首次使用了一种新的含有二茂铁甲醛和六氰基尿酸钾(II)的配方,并在阳极上着色了钌紫色(RP)薄膜。 X射线光电子能谱和傅立叶变换红外分析证实RP膜结构为无机配位聚合物:Kx中心点Fe-x(III)[Ru-II(CN)(6)](y),其中Fe3 +和Ru2 +颜色中心位于CN-配体的两侧。推导的原子力显微镜确定的纳米级电导率分别为RP和WO3-PBV LbL膜,分别为1.03和147.4 mS cm(-1),这证实了它们具有作为混合导体的功能,这与光开关过程中的属性有关。 RP膜中紫色和无色之间可逆的偏光诱导转变,WO3-PBV LbL膜分别具有188和380 cm(2)C-1的着色效率,可实现深蓝色和无色之间的过渡。 WO3-PBV / RP的互补色电致变色器件是用一种环境友好,廉价的水性电解质制成的,该电解质在蓝色,紫色和无色状态之间切换。该器件在580 nm处的电致变色效率为476 cm(2)C-1,传输调制率为49%,开关时间短(类似于1 s);所有这些器件都在+/- 1V的极低工作电压下工作。 WO3-PBV / RP器件可在低操作偏置下提供高光学对比度,并且具有高度可扩展性和耐用性,这表明它非常适合诸如快速变化的显示器或智能窗口之类的实际光学开关器件。 (C)2014 Elsevier B.V.保留所有权利。

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