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建模高效量子点敏化太阳能电池。

Modeling high-efficiency quantum dot sensitized solar cells.

机构信息

Photovoltaic and Optoelectronic Devices Group, Departament de Física, Universitat Jaume I, 12071 Castelló, Spain.

出版信息

ACS Nano. 2010 Oct 26;4(10):5783-90. doi: 10.1021/nn101534y.

Abstract

With energy conversion efficiencies in continuous growth, quantum dot sensitized solar cells (QDSCs) are currently under an increasing interest, but there is an absence of a complete model for these devices. Here, we compile the latest developments in this kind of cells in order to attain high efficiency QDSCs, modeling the performance. CdSe QDs have been grown directly on a TiO(2) surface by successive ionic layer adsorption and reaction to ensure high QD loading. ZnS coating and previous growth of CdS were analyzed. Polysulfide electrolyte and Cu(2)S counterelectrodes were used to provide higher photocurrents and fill factors, FF. Incident photon-to-current efficiency peaks as high as 82%, under full 1 sun illumination, were obtained, which practically overcomes the photocurrent limitation commonly observed in QDSCs. High power conversion efficiency of up to 3.84% under full 1 sun illumination (V(oc) = 0.538 V, j(sc) = 13.9 mA/cm(2), FF = 0.51) and the characterization and modeling carried out indicate that recombination has to be overcome for further improvement of QDSC.

摘要

随着能量转换效率的不断提高,量子点敏化太阳能电池(QDSCs)目前受到越来越多的关注,但这些器件缺乏完整的模型。在这里,我们编译了这种电池的最新发展情况,以获得高效率的 QDSCs,对其性能进行建模。通过连续离子层吸附和反应,将 CdSe QD 直接生长在 TiO(2)表面上,以确保高 QD 负载。分析了 ZnS 涂层和之前的 CdS 生长情况。使用多硫化物电解质和 Cu(2)S 对电极来提供更高的光电流和填充因子 FF。在全 1 太阳光照下,获得了高达 82%的入射光子到电流效率峰值,这实际上克服了 QDSCs 中常见的光电流限制。在全 1 太阳光照下,功率转换效率高达 3.84%(Voc = 0.538 V,j(sc) = 13.9 mA/cm(2),FF = 0.51),并进行了表征和建模,表明为了进一步提高 QDSC 的性能,必须克服复合问题。

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