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Effect of quenching temperature and medium on properties of TiO_2 nanotube arrays in DSSC

机译:淬火温度和介质对DSSC中TiO_2纳米管阵列性质的影响

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TiO_2 nanotube arrays (TNAs) fabricated by anodization were quenched to obtain high-quality samples for the application of such electrodes in dye-sensitized solar cells (DSSC). The morphology, crystallization structure and photoelectrochemical properties of the samples were studied. The results showed that the quenched nanotubes assembled together into bundles but every single one maintained tubelike shape. In transient photocurrent response of electrode, photocurrent increased with the increasing of bias potential and photoelectrochemical properties of quenched electrodes were better than the unquenched, displaying obvious characterization of slow current response. When applied in DSSC, the sample quenched at -100°C in ethanol displayed the best performance with J_(sc) = 4.186 mA/cm~2, V_(oc) = 0.781 V, FF = 0.48, η = 1.569%.
机译:通过阳极氧化制造的TiO_2纳米管阵列(TNA)以获得高质量的样品,用于在染料敏化太阳能电池(DSSC)中的这种电极。 研究了样品的形态,结晶结构和光电化学性质。 结果表明,淬火的纳米管子组装在一起,但每个单个一个保持管状的形状。 在电极的瞬态光电流响应中,光电流随着偏置电位的增加而增加,淬火电极的光电化学性质优于未填充,显示出慢电流响应的明显表征。 当应用于DSSC时,在-100℃下在乙醇中淬灭的样品显示最佳性能,J_(SC)= 4.186 mA / cm〜2,V_(OC)= 0.781 V,FF = 0.48,η= 1.569%。

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