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首页> 外文期刊>Nanotechnology >Factors determining the photovoltaic performance of a CdSe quantum dot sensitized solar cell: the role of the linker molecule and of the counter electrode
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Factors determining the photovoltaic performance of a CdSe quantum dot sensitized solar cell: the role of the linker molecule and of the counter electrode

机译:决定CdSe量子点敏化太阳能电池光伏性能的因素:连接分子和反电极的作用

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Colloidal CdSe quantum dots (QDs) of different sizes, prepared by a solvothermal route, have been employed as sensitizers of nanostructured TiO2 electrode based solar cells. Three different bifunctional linker molecules have been used to attach colloidal QDs to the TiO2 surface: mercaptopropionic acid (MPA), thioglycolic acid (TGA), and cysteine. The linker molecule plays a determinant role in the solar cell performance, as illustrated by the fact that the incident photon to charge carrier generation efficiency (IPCE) could be improved by a factor of 5-6 by using cysteine with respect to MPA. The photovoltaic properties of QD sensitized electrodes have been characterized for both three-electrode and closed two-electrode solar cell configurations. For three-electrode measurement a maximum power conversion efficiency near 1% can be deduced, but this efficiency is halved in the closed cell configuration mainly due to the decrease of the fill factor (FF).
机译:通过溶剂热途径制备的不同尺寸的胶体CdSe量子点(QD)已被用作基于纳米结构的TiO 2电极的太阳能电池的敏化剂。三种不同的双功能连接分子已用于将胶体QD连接到TiO2表面:巯基丙酸(MPA),巯基乙酸(TGA)和半胱氨酸。接头分子在太阳能电池性能中起着决定性的作用,这一事实说明,相对于MPA,使用半胱氨酸可以使入射光子至电荷载流子的产生效率(IPCE)提高5-6倍。 QD敏化电极的光伏特性已针对三电极和封闭两电极太阳能电池配置进行了表征。对于三电极测量,可以得出接近1%的最大功率转换效率,但是在闭孔配置中,此效率减半了,这主要是由于填充因子(FF)的降低。

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