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Effect of intermediate layer in photocurrent improvement of three-layer photoanodes using WO3 and Fe2O3

机译:中间层在使用WO3和Fe2O3的三层光耦合的光电流改善中的影响

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摘要

Sol–gel method was applied to synthesize WO3/Fe2O3 three-layer films in order to improve the generated photocurrent under UV–vis light irradiation. The films were deposited on FTO glass substrates through doctor bladding method. The samples were then calcined at 500 °C. The photocurrents of the synthesized photoanodes were evaluated by measuring the electric current and voltage under UV–vis light at room temperature. Scanning electron microscopy (SEM) revealed unique surface morphologies owing to the presence of the intermediate layers. At an applied potential of 1300 mV, the WO3Fe2O3WO3 and Fe2O3WO3Fe2O3 photoanodes exhibited photocurrent densities up to 0.1 mA/cm2 and 0.6 mA/cm2, respectively. It was found that porous films with easy accessibility to the inner surface reveal high photocurrents. The intermediate layer of WO3 demonstrated higher values of photocurrent due to roughness enhancement on the upper surface with columnar tree-growth particles. However, a compact state was observed on the cross section of Fe2O3 growth. A comparison was also drawn between the two and three-layer photoanodes using Fe2O3 andWO3. The films were characterized by XRD, SEM/EDX, and UV–vis irradiation to determine the photocurrent densities.
机译:施加溶胶 - 凝胶法合成WO3 / Fe2O3三层膜,以改善UV-Vis光照射下产生的光电流。薄膜通过施工施工方法沉积在FTO玻璃基板上。然后将样品在500℃下煅烧。通过在室温下测量UV-Vis光下的电流和电压来评估合成光耦合的光电流。扫描电子显微镜(SEM)由于中间层的存在而显示出独特的表面形态。在1300mV的施加电位下,WO3 Fe2O3 WO3和Fe2O3 WO3 Fe2O3 PhotoPlodes分别显示出高达0.1mA / cm 2和0.6mA / cm 2的光电流密度。发现多孔膜具有易于到内表面的可易于使用的薄膜显示出高光电流。由于具有柱状树生长颗粒的上表面上的粗糙度增强,WO3的中间层表现出更高的光电流值。然而,在Fe2O3生长的横截面上观察到紧凑的状态。使用Fe2O3和WO3在两个和三层光阳极之间也绘制了比较。薄膜的特征在于XRD,SEM / EDX和UV-VIS辐射以确定光电流密度。

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