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Hierarchical NiO/CMK-3 Photocathode for a p-Type Dye-Sensitized Solar Cell with Improved Photoelectrochemical Performance and Fast Hole Transfer

机译:具有改进的光电化学性能和快速空穴转移的p型染料敏化太阳能电池用分层NiO / CMK-3光电阴极

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摘要

The sluggish photoelectrochemical performance of -type dye-sensitized solar cells ( -DSSCs) has hindered its commercial use. In this work, we introduce a novel hierarchical nanocomposite of NiO nanoparticles anchored on highly ordered mesoporous carbons CMK-3 (NiO/CMK-3). Using CMK-3 as a backbone effectively prevented the self-aggregation of NiO nanoparticles and subsequently increased the total specific surface area of the composite for more dye adsorption. The interconnected conductive networks of CMK-3 also served as a split-flow high-speed channel, which was beneficial for hole spin-flow to accelerate hole transfer. The hierarchical NiO/CMK-3 photocathode improved the photovoltaic conversion efficiency to 1.48% in a cell with a Cobalt(II)/(III) electrolyte and a PMI-6T-TPA dye.
机译:型染料敏化太阳能电池(-DSSC)的光电化学性能低下已经阻碍了其商业应用。在这项工作中,我们介绍了锚固在高度有序的介孔碳CMK-3(NiO / CMK-3)上的新型NiO纳米颗粒的分层纳米复合材料。使用CMK-3作为主链可有效防止NiO纳米粒子的自聚集,并随后增加复合材料的总比表面积,以吸收更多的染料。 CMK-3的互连导电网络还用作分流高速通道,这有利于空穴自旋流以加速空穴传输。在带有钴(II)/(III)电解质和PMI-6T-TPA染料的电池中,分层NiO / CMK-3光电阴极将光伏转换效率提高到1.48%。

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