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Studies on Graphene Zinc-Oxide Nanocomposites Photoanodes for High-Efficient Dye-Sensitized Solar Cells

机译:高效染料敏化太阳能电池石墨烯锌氧化物纳米复合材料的研究

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A dye-sensitized solar cells (DSSCs) using a nanocomposite (NC) semiconductor film, consisting of graphene layer and ZnO nanosheets (Gr-ZnO) is fabricated by electrodeposition process. The DSSCs based on Gr-ZnO NC were determined via electrochemical impedance spectra (EIS), UV-Visible diffused reflectance spectroscopy (UV-Vis), and photovoltaic performances J-V curves to substantiate the explanations. Impedance spectra shows that a smaller charge transport time constant occurs in DSSCs based on Gr-ZnO NC comparing to ZnO. This improved the electron collecting efficiency significantly, resulting in high open circuit voltage. Moreover, Gr-ZnO NC shows an efficient photoinduced charge separation and transportation can be achieved at the interface thus exhibit excellent potential for photocurrent generation compared with sole ZnO. Gr-ZnO NC obtained a maximum photocurrent response for an open-circuit voltage and a power conversion efficiency of 0.96 V and 7.01% respectively, which is doubled from sole ZnO. The fabricated Gr-ZnO NC cells show better performances compared to conventional ZnO structure reference cell.
机译:使用纳米复合材料(NC)半导体膜,由石墨烯层和ZnO纳米晶片(GR-ZnO)组成的染料敏化太阳能电池(DSSCs)由电沉积工艺制造。基于GR-ZnO NC的DSSCS通过电化学阻抗谱(EIS),UV可见扩散反射光谱(UV-VI)和光伏性能J-V曲线确定,以证实解释。阻抗光谱表明,基于与ZnO的GR-ZnO NC,在DSSCS中发生较小的电荷传输时间常数。这显着提高了电子收集效率,导致高开路电压。此外,GR-ZnO NC示出了有效的光致电荷分离和运输可以在界面中实现,因此与唯一的ZnO相比表现出光电流产生的优异潜力。 GR-ZnO NC获得了开路电压的最大光电流响应,电源转换效率分别为0.96 V和7.01%,从唯一的ZnO加倍。与传统的ZnO结构参考电池相比,制造的GR-ZnO NC细胞显示出更好的性能。

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