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Hierarchically Structured ZnO Nanorods-Nanosheets for Improved Quantum-Dot-Sensitized Solar Cells

机译:分层结构的ZnO纳米棒-纳米片用于改进量子点敏化的太阳能电池

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摘要

ZnO nanorods (NRs) and nanosheets (NSs) were fabricated by adjusting the growth orientation of ZnO crystals in the reaction solution, respectively. The thin ZnO NSs were slowly assembled on the surface of NRs to form a hierarchically structured NR-NS photoelectrode for constructing CdS/ CdSe quafitum-dot-sensitized solar cells (QDSCs). This hierarchical structure had two advantages in improving the power conversion efficiency (PCE) of the solar cells: (a) it increased the surface area and modified the surface profile of the ZnO NRs to aid in harvesting more quantum dots, which leads to a high short-current density (J_(SC)); (b) it facilitated transportation of the electrons in this compact structure to reduce the charge recombination, which led to enhancement of the open-circuit voltage (V_(OC)) and fill factor (FF). As a result, the QDSC assembled with the hierarchical NR-NS photoelectrode exhibited a high PCE of 3.28%, which is twice as much as that of the NR photoelectrode (1.37%).
机译:分别通过调节反应溶液中ZnO晶体的生长方向来制备ZnO纳米棒(NRs)和纳米片(NSs)。将薄的ZnO NSs缓慢地组装在NRs的表面上,以形成用于构造CdS / CdSe量子点敏化太阳能电池(QDSC)的分层结构的NR-NS光电极。这种分层结构在提高太阳能电池的功率转换效率(PCE)方面有两个优点:(a)增加了ZnO NR的表面积并修改了ZnO NR的表面轮廓,以帮助收集更多的量子点,从而获得了较高的量子点。短电流密度(J_(SC)); (b)在这种紧凑的结构中促进了电子的传输,以减少电荷的复合,从而导致开路电压(V_(OC))和填充系数(FF)的增加。结果,装配有分级NR-NS光电极的QDSC表现出3.28%的高PCE,是NR光电极(1.37%)的两倍。

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