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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Self-assembled ultrathin titania nanosheets as blocking layers for significantly enhanced photocurrent and photovoltage of dye-sensitized solar cells
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Self-assembled ultrathin titania nanosheets as blocking layers for significantly enhanced photocurrent and photovoltage of dye-sensitized solar cells

机译:自组装超薄二氧化钛纳米片作为阻挡层,可显着提高染料敏化太阳能电池的光电流和光电压

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To retard charge recombination efficiently in dye-sensitized solar cells (DSSCs), an ultrathin film of single-crystal titania nanosheets is pre-coated on a conductive substrate as a blocking layer through electrostatic layer-by-layer self-assembly. The marked effect of the self-assembled titania nanosheet film is the remarkable enhancements of short-circuit photocurrent by 45%, from 12.57 to 18.24 mA cm(-2), and open-circuit photovoltage by 16%, from 690 to 798 mV. As a consequence, the power conversion efficiency is improved notably by 61% from 6.50% to 10.48% when a 50 nm thick titania nanosheet film is pre-coated as a blocking layer, which is also superior to that obtained by using a pyrolyzed blocking layer (7.79%) and the well-known TiCl4 treatment (efficiency of 7.98%). Controlled intensity modulated photovoltage/photocurrent spectra reveal that the self-assembled blocking layer of titania nanosheets not only retards charge recombination but also increases the charge collection efficiency, accounting for the remarkable increase in open-circuit photovoltage and short-circuit photocurrent, respectively. This finding implies that pre-deposition of an ultrathin TiO2 nanosheet layer on the conductive substrate would be an ideal strategy to remarkably increase short-circuit photocurrent and open-circuit photovoltage simultaneously and thus to enhance the power conversion efficiency of DSSCs remarkably.
机译:为了有效地抑制染料敏化太阳能电池(DSSC)中的电荷重组,通过静电逐层自组装将单晶二氧化钛纳米片的超薄膜预涂在导电衬底上作为阻挡层。自组装二氧化钛纳米片薄膜的显着效果是,短路光电流从12.57到18.24 mA cm(-2)显着提高了45%,从690到798 mV则提高了16%。结果,当预先涂覆50 nm厚的二氧化钛纳米片薄膜作为阻挡层时,功率转换效率从6.50%显着提高了61%,从10.48%提高,这也优于使用热解阻挡层获得的功率转换效率(7.79%)和著名的TiCl4处理(效率7.98%)。受控强度调制的光电压/光电流光谱表明,二氧化钛纳米片的自组装阻挡层不仅延迟了电荷复合,而且提高了电荷收集效率,分别说明了开路光电压和短路光电流的显着增加。该发现暗示在导电基底上预先沉积超薄的TiO 2纳米片层将是理想的策略,其同时显着增加短路光电流和开路光电压,从而显着提高DSSC的功率转换效率。

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