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Electron transport and electrochromic properties of sol-gel WO_3 thin films: Effect of crystallinity

机译:溶胶-凝胶WO_3薄膜的电子输运和电致变色性能:结晶度的影响

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The influence of crystallinity on the electron transport and electrochromic properties of sol-gel WO3 thin films has been investigated. It is observed that, at 200 degrees C, WO3 films exhibits amorphous crystallinity with disk-like nanostructures while sharp crystalline in the monoclinic structure, at higher temperature (400 degrees C). The optical band gap of the films sees an increase first and then a decrease with increasing annealing temperature (150-400 degrees C). The diffusion coefficient of electrons is studied by monitoring an electron-diffusion-controlled electrochromic process and found 0.0007 cm(2)/s for amorphous WO3, which is increased by an order of magnitude to 0.0066 cm(2)/s, in the crystalline WO3. It is also observed that the crystalline WO3 exh(i)bits larger optical modulation upon electrocoloration. Electrochemical characterizations reveal high electrochromic performance for crystalline WO3 than the amorphous one, when equal amount of charge is injected. The enhanced optical modulation of crystalline WO3 suggests that more electrons participate in the optical transition yielding electrocoloration due to improved electron transport.
机译:研究了结晶度对溶胶-凝胶WO3薄膜的电子传输和电致变色性能的影响。观察到,在更高的温度(400摄氏度)下,WO3薄膜在200摄氏度时呈现出具有圆盘状纳米结构的非晶态结晶性,而在单斜晶结构中则呈现出锐利的结晶性。随着退火温度(150-400摄氏度)的升高,薄膜的光学带隙先增大,然后减小。通过监测电子扩散控制的电致变色过程研究了电子的扩散系数,发现非晶态WO3为0.0007 cm(2)/ s,在晶体中增加了一个数量级,达到0.0066 cm(2)/ s。 WO3。还观察到,结晶WO3在电着色时表现出更大的光学调制。当注入等量的电荷时,电化学表征显示出结晶WO3的电致变色性能高于非晶态WO3。结晶WO3的增强的光学调制表明,由于改善了的电子传输,更多的电子参与了光学跃迁,从而产生电致变色。

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