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首页> 外文期刊>Solar Energy >Noncorrosive necking treatment of the mesoporous BaSnO_3 photoanode for quantum dot-sensitized solar cells
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Noncorrosive necking treatment of the mesoporous BaSnO_3 photoanode for quantum dot-sensitized solar cells

机译:用于量子点敏化太阳能电池的中孔Basno_3光电仪的非腐蚀颈缩

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The perovskite structure BaSnO3 is regarded as a promising photoanode material, and an effective necking treatment strategy is necessary for the electrical connectivity of mesoporous BaSnO3 photoanode-based solar cells. The often-adopted necking strategy involves the treatment in TiCl4 solution with low pH, which can lead to the leaching of barium cations from BaSnO3 and impair the effect of the necking treatment. To address this issue, we report herein a novel noncorrosive necking strategy based on the common ion effect. The strategy involved treating the mesoporous BaSnO3 photoanode with a mixture solution of TiCl4 and BaCl2. Compared with the common TiCl4 necking treatment, the treatment with TiCl4 and BaCl2 mixture solution negligibly affected the formation of the TiO2 overlayer on the surface of BaSnO3 particles, but it maintained the crystallinity of the BaSnO3 particles. The TiCl4 and BaCl2 mixture solution treated BaSnO3 photoanodes were assembled into CdSe/CdS co-sensitized quantum dot-sensitized solar cells (QDSSCs), which showed ca. 37% increase in power conversion efficiency in comparison with the TiCl4 treated photoanode. The charge extraction, electrochemical impedance spectroscopy, and intensity-modulated voltage/photocurrent spectroscopy measurements showed that the QDSSCs fabricated from the TiCl4 and BaCl2 mixture solution treated BaSnO3 photoanode contained fewer trap states and exhibited less charge recombination and longer electron lifetime than those based on the common TiCl4 treated photoanodes, demonstrating the effectiveness of the noncorrosive necking treatment.
机译:PEROVSKITE结构BASNO3被认为是有前途的光电码材料,并且有效的颈缩处理策略对于基于中孔BASNO3光电码的太阳能电池的电连接是必需的。经常采用的颈缩策略涉及用低pH的TiCl4溶液治疗,这可能导致来自BasnO3的钡阳离子的浸出并损害颈缩处理的效果。为了解决这个问题,我们在本文中报告了一种基于常见离子效应的新型非腐蚀颈策略。策略涉及用TiCl4和BaCl2的混合溶液处理介孔BasnO3光电极。与常见的TiCl4缩颈处理相比,用TiCl4和Bacl2混合物的处理可忽略地影响到BasnO3颗粒表面上的TiO 2叠层的形成,但它保持了BasnO3颗粒的结晶度。将TiCl4和Bacl2混合物溶液处理过的BasnO 3光碳,组装成CDSE / Cds共敏化量子点敏化太阳能电池(QDSSCs),其显示为CA。与TiCl4处理的光电码相比,功率转换效率增加了37%。电荷提取,电化学阻抗谱和强度调制电压/光电流光谱测量结果表明,由TiCl4和Bacl2混合物溶液处理的QDSSC含有较少的陷阱状态,并且表现出比基于所述的电荷重组和更长的电子寿命更少常见的TICL4经过处理的光云,展示了非腐蚀性颈颈部处理的有效性。

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