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In situ growth of hierarchical NiS2 hollow microspheres as efficient counter electrode for dye-sensitized solar cell

机译:原位生长分层NiS2空洞微球作为有效的对电极涂料的太阳能电池

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Hierarchical NiS2 hollow microspheres (HM-NiS2) were successfully in situ grown on FTO by a one-step hydrothermal method, and then tested as the counter electrode (CE) for dye-sensitized solar cell (DSSC) for the first time. The SEM images reveal that the hierarchical NiS2 microspheres were successfully grown on FTO substrate. It is worth noting that some of the shells are partially broken, which is advantageous for providing more electrolyte adsorptions and electrocatalytic active sites. The electrocatalytic ability and electrochemical properties of the HM-NiS2 were studied by cyclic voltammetry, electrochemical impedance spectroscopy and Tafel polarization. The power conversion efficiency of 7.84% is achieved for the DSSC based on HM-NiS2 CE, which is close to that of the DSSC using Pt CE (7.89%). The results indicate that the in situ fabricated HM-NiS2 CE may be a good candidate for high efficiency and low-cost DSSCs.
机译:分层NiS2中空微球(HM-NiS2)成功原位生长在FTO的吗一步水热法,然后再测试对电极(CE)涂料太阳能电池(DSSC)第一次。图像显示,层次NiS2微球成功种植在FTO衬底。外壳部分破碎,这是便于提供更多的电解液吸附和electrocatalytic活跃网站。electrocatalytic能力和电化学的属性HM-NiS2循环进行了研究伏安法、电化学阻抗光谱和塔菲尔极化。转换效率达到7.84%基于HM-NiS2 DSSC CE、接近使用Pt的DSSC CE(7.89%)。表明原位捏造HM-NiS2 CE效率高,可能是一个好的人选吗低成本DSSCs。

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