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首页> 外文期刊>Electrochimica Acta >Fabrication of TiO2 nanoparticle/TiO2 microcone array photoanode for fiber-type dye-sensitized solar cells: Effect of acid concentration on morphology of microcone
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Fabrication of TiO2 nanoparticle/TiO2 microcone array photoanode for fiber-type dye-sensitized solar cells: Effect of acid concentration on morphology of microcone

机译:用于纤维型染料敏化太阳能电池的TiO2纳米粒子/ TiO2微酮阵列光电料:酸浓度对微酮形态的影响

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Fiber-type dye-sensitized solar cell (FDSSC) is one of the promising energy generating devices for soft electronics, especially due to the great photon-to-electricity conversion ability even under weak deem light. High dye adsorption, great light utilization, efficient charger-transfer routes and excellent flexibility are required for the photoanode of FDSSCs. In this study, flexible Ti wires are etched using different concentrations of H2SO4 electrolytes in anodization process to form TiO2 microcone array (TMC) as the photoanode of FDSSCs at the first time. Growth mechanism of TMC in different concentrations of H2SO4 electrolytes is proposed to more clearly explain the acid concentration effects. The FDSSC with the TMC photoanode prepared using 4 MH2SO4 electrolyte shows the highest photon-to-electricity conversion efficiency (h) of 2.11%, due to the formation of well-distributed TMC to provide one-dimensional charge-transfer paths and induce effective light scattering. The TiO2 nanoparticle (TNP) is deposited on TMC using dip-coating technique. The h is enhanced to 3.70% for the FDSSC with the optimized TNP thickness, which is able to provide sufficient surface area for dye adsorption and prevent the thickness from exceeding charge diffusion length. Electrochemical impedance spectroscopy is used to analyze the charge-transfer resistance of FDSSCs with the fancy TNP/TMC photoanodes. (c) 2019 Elsevier Ltd. All rights reserved.
机译:纤维型染料敏化太阳能电池(FDSSC)是用于软电子的有希望的能量产生装置之一,特别是由于即使在弱的检测光线下也是由于光子到电力转换能力。高染料吸附,光线利用率,高效充电器传输路线以及FDSSC的光电仪需要出色的灵活性。在该研究中,使用阳极氧化过程中的不同浓度的H 2 SO 4电解质蚀刻柔性Ti线以形成TiO2微酮阵列(TMC)作为FDSSCs的光电态。提出了不同浓度H2SO4电解质的TMC的生长机制,以更清楚地解释酸浓度效应。使用4MH2SO4电解质制备的TMC PhotoNode的FDSSC显示出最高的光子 - 电转换效率(H)为2.11%,由于形成良好分布的TMC,提供一维电荷转移路径并诱导有效光散射。使用浸涂技术在TMC上沉积TiO2纳米颗粒(TNP)。具有优化TNP厚度的FDSSC的H增强至3.70%,其能够为染料吸附提供足够的表面积,并防止厚度超过电荷扩散长度。电化学阻抗光谱用于分析FDSSCS的电荷转移电阻,具有拟型TNP / TMC光电码。 (c)2019 Elsevier Ltd.保留所有权利。

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