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Electrochromic response, structure optimization and ion transfer behavior in viologen adsorbed titanium oxide films

机译:紫胶吸附二氧化钛薄膜的电致变色响应,结构优化和离子转移行为

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Nanostructured TiO2 films have been fabricated using a simple wet chemistry route and the post-deposition annealing temperature has been optimized on the basis of crystal structure. particle and pore size. reflectance (diffuse) and band gap. The film annealed at 700 degrees C with a rutile structure, equipped with mesopores of 15 to 30 nm dimension, high diffuse reflectance (R-max=91%) and an indirect band gap of 2.5 eV was found to be most suitable for the adsorption of bis-(2-phosphonoethyl)-4,4'-bipyridinium dichloride (viologen). The electroactive behavior of the viologen adsorbed TiO2 film as a function of reduction level and in oxidized and neutral states has been followed by cyclic voltammetry and electrochemical impedance spectroscopy through equivalent circuits and compared with the response of blank TiO2. It has been shown that interfacial charge transfer resistance governs ion intercalation during coloration with little contribution from the charge transfer and double layer capacitive components. The remarkable coloration efficiency (203 cm(2) C-1, lambda = 720 nm) and good reversibility of the color-bleach process for viologen adsorbed TiO2 films have been found to be closely linked to the microstructure of the oxide layer.
机译:纳米结构的TiO2薄膜已使用简单的湿化学方法制备,并且根据晶体结构优化了沉积后退火温度。颗粒和孔径。反射率(漫射)和带隙。发现该膜在700℃退火,具有金红石结构,具有15至30 nm尺寸的中孔,高漫反射率(R-max = 91%)和2.5 eV的间接带隙最适合吸附-双(2-膦酰基乙基)-4,4'-联吡啶二氯化物(紫精)。紫胶吸附的TiO2薄膜的电活性随还原水平的变化而变化,并处于氧化态和中性态,然后通过等效电路进行循环伏安法和电化学阻抗谱分析,并与空白TiO2的响应进行比较。已经表明,界面电荷转移电阻控制着着色期间的离子嵌入,而电荷转移和双层电容成分的贡献很小。已发现显着的着色效率(203 cm(2)C-1,λ= 720 nm)和紫精吸附的TiO2薄膜的色漂过程的良好可逆性与氧化物层的微观结构密切相关。

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