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ElectrochemicalSelf-Assembly of Nanostructured CuSCN/RhodamineB Hybrid Thin Film and Its Dye-Sensitized Photocathodic Properties

机译:电化学的纳米结构CuSCN /若丹明的自组装B杂化薄膜及其染料敏化光阴极性能

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摘要

Nanostructured hybrid thin films of CuSCN and rhodamine B (RB) are electrochemically self-assembled (ESA) by cathodic electrolysis in an ethanol/water mixture containing Cu2+, SCN, and RB. By selecting the solvent, Cu2+/SCN ratio, and the concentration of RB, we demonstrate several control parameters in the film formation. High loading of RB into the film has been achieved to reach a CuSCN:RB volume ratio of approximately 2:1. The RB solid could almost completely be extracted from the hybrid film by soaking the film in dimethylacetamide (DMA), leading to a large increase of the surface area. The crystallographic orientation of the nanostructure with respect to the substrate can be controlled. Efficient quenching of fluorescence of RB has been observed for the CuSCN/RB hybrid film, implying hole injection from RB excited state to CuSCN. Photoelectrochemical study on the porous crystalline CuSCN obtained after the DMA treatment and sensitized with RB revealed sensitized photocathodic action under visible light illumination, indicating the potential usefulness of the porous CuSCN electrodes for construction of tandem dye-sensitized solar cells.
机译:在含有Cu 2 + ,SCN 的乙醇/水混合物中,通过阴极电解对CuSCN和罗丹明B(RB)的纳米结构混合薄膜进行电化学自组装(ESA)。和RB。通过选择溶剂,Cu 2 + / SCN 比以及RB的浓度,我们证明了成膜过程中的几个控制参数。已实现将RB高负载到薄膜中,以使CuSCN:RB体积比达到约2:1。通过将薄膜浸泡在二甲基乙酰胺(DMA)中,几乎可以从杂化薄膜中完全提取出RB固体,从而大大增加了表面积。可以控制纳米结构相对于基底的晶体学取向。对于CuSCN / RB杂化膜,已经观察到RB荧光的有效猝灭,这意味着从RB激发态到CuSCN的空穴注入。对DMA处理后获得并用RB敏化的多孔晶体CuSCN的光电化学研究表明,在可见光照射下敏化了光阴极的作用,表明了多孔CuSCN电极对构建串联染料敏化太阳能电池的潜在实用性。

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