首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Color switching in V3O7 center dot H2O films cycled in Li and Na based electrolytes: novel vanadium oxide based electrochromic materials
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Color switching in V3O7 center dot H2O films cycled in Li and Na based electrolytes: novel vanadium oxide based electrochromic materials

机译:在Li和Na基电解质中循环V3O7中心点H2O薄膜的彩色切换:新型氧化钒的电致变色材料

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Vanadium oxides exhibiting various V/O stoichiometries are considered as one of the most promising chromogenic materials for energy purposes. Commonly addressed are the thermochromic properties of VO2 and the electrochromic ones of V2O5. In this work, we report a robust synthetic methodology that provides access to stoichiometry-control of the final powder namely, a hydrothermal route is used to synthesize pure vanadium oxyhydroxide with mixed valence states (V5+ and V4+) of the V3O7 center dot H2O (H2V3O8) formula. Upon synthesis of the powder, the influence of reducing agents on the structure, morphology and crystallite size is investigated. The electrochromic properties of the doctor bladed V3O7 center dot H2O thick film (E 1.2 mm) in Li- and Na-based electrolytes show in both cases good reversibility and good color switching in between reduced and oxidized states. Preliminary investigations of the EC mechanism allow the identification of faradaic and capacitive contributions in this oxide showing switching times of only a few seconds.
机译:表现出各种v / O的氧化钒被认为是用于能量目的最有前途的发色材料之一。通常寻址的是VO2的热致变色特性和V2O5中的电致变色。在这项工作中,我们报告了一种稳健的合成方法,可以提供对最终粉末的化学计量控制的进入,即,水热途径用于合成V3O7中心点H2O(H2V3O8)的混合价态(V5 +和V4 +)的纯羟基氧化物。(V5 +和V4 +)(H2V3O8) ) 公式。在合成粉末后,研究了还原剂对结构,形态和微晶尺寸的影响。在Li-和Na基电解质中的博士叶片V3O7中心点H2O厚膜(E1.2mm)的电致变色特性在良好的可逆性和良好的氧化态之间的良好可逆性和良好的颜色切换中。 EC机制的初步调查允许识别该氧化物中的法拉迪和电容贡献,显示仅几秒钟的切换时间。

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