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Investigation of electrochromic properties of novel tungsten trioxide nano-structure preparation using hydrothermal process

机译:采用水热法制备新型钨三氧化锆纳米结构制剂电致变色性能研究

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The purpose of this study is to fabricate the tungsten trioxide (WO3) nano-rod (WNRs) films by hydrothermal process and investigate the relationship between microstructure morphologies and electrochromic properties. A WO3 seed layer with monoclinic structure was deposited on a fluorine doped tin oxide (FTO) coated glass substrate by spin coating. The mixtures of sodium tungstate (Na2WO4), hydrochloric acid (HCl), oxalic acid (H2C2O4) and sodium acetate (CH3COONa, capping agent) were adopted to be the precursors of WO3 films for the hydrothermal process. By a series of experiments, it was found the optimal process parameters were the Na2WO4 concentration of 0.25M, the pH of 2.2, the capping agent of 0.0075mol, the growth temperature of 180??C and the growth time of 2 hr. It revealed the optimal process parameters samples possessed best electrochromic properties is due to having high specific surface area and porous structure which resulted in more easily react with lithium ion (Li+) in the electrolyte.
机译:本研究的目的是通过水热过程制造氧化钨(WO3)纳米棒(WNRS)膜,并研究微观结构形态与电致变色特性的关系。通过旋涂沉积在氟掺杂的氧化锡(FTO)涂覆的玻璃基板上沉积具有单斜晶结构的WO3种子层。采用钨酸钠(NA2WO4),盐酸(HCl),草酸(H2C2O4)和乙酸钠(CH 3 COPA,封端剂)的混合物是水热法的WO3薄膜的前体。通过一系列实验,发现最佳过程参数为0.25m的Na 2 O 4浓度,pH为2.2,封端剂为0.0075mol,生长温度为180Ω·c和2小时的生长时间。它揭示了具有最佳电致变色特性的最佳过程参数样品是由于具有高比表面积和多孔结构,导致电解质中更容易与锂离子(Li +)反应。

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