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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Systematic compositional changes and their influence on lattice and optoelectronic properties of Cu2ZnSnSe4 kesterite solar cells
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Systematic compositional changes and their influence on lattice and optoelectronic properties of Cu2ZnSnSe4 kesterite solar cells

机译:Cu2ZnSnSe4硅藻土太阳能电池的系统组成变化及其对晶格和光电性能的影响

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Kesterite thin films solar cells have been studied in recent years as a potential earth abundant alternative to other thin film technologies such as the ones based on the chalcopyrite Cu(In,Ga)Se-2 (CIGS). However, the efficiency of the kesterite devices is still low and needs further development. In order to increase the performance of the kesterite solar cells, a better understanding of the influence of variations of compositions on the crystal lattice of the absorber layer is needed. This paper presents a study of how variations in the Cu content in the Cu2ZnSnSe4 (CZTSe) absorber layer affects the crystal structure and therefore changes the optoelectronic properties of the solar cell. Three sets of CZTSe absorbers with different Cu content were synthesised by sputtering of metallic targets followed by a rapid thermal selenisation process. An accurate characterisation of the lattice parameters of the unit cell is presented, showing that a decrease of the Cu content in the CZTSe absorber layer diminishes the unit cell volume. This decrease in volume is related to an increase in the concentration of [V-Cu+Zn-Cu] and the ordering of the Cu/Zn atoms in the (001) plane. The variations in the lattice of CZTSe induced by decreasing the Cu content cause an increase of the bandgap of absorber layer, which leads to an increase of the open circuit voltage (V-OC) in the devices. The best solar cell was based on the absorber layer with the lowest Cu content and yielded an efficiency of 8.1% with a fill factor of 59.8%, J(sc)=31.1 mA/cm(2) and V-oc=434 mV. (C) 2015 Elsevier B.V. All rights reserved.
机译:近年来已经研究了钾长石薄膜太阳能电池,作为其他薄膜技术(例如基于黄铜矿Cu(In,Ga)Se-2(CIGS)的薄膜技术)的潜在地球丰富替代品。但是,钾盐沸石装置的效率仍然很低,需要进一步发展。为了提高硅藻土太阳能电池的性能,需要更好地理解组成变化对吸收层的晶格的影响。本文介绍了有关Cu2ZnSnSe4(CZTSe)吸收层中Cu含量变化如何影响晶体结构并因此改变太阳能电池的光电性能的研究。通过溅射金属靶材,然后进行快速热硒化工艺,合成了三组具有不同铜含量的CZTSe吸收剂。精确描述了晶胞的晶格参数,表明CZTSe吸收层中Cu含量的减少会减小晶胞的体积。体积的减少与[V-Cu + Zn-Cu]的浓度增加和(001)平面中Cu / Zn原子的有序化有关。由降低Cu含量引起的CZTSe晶格变化导致吸收层的带隙增加,这导致器件中的开路电压(V-OC)增加。最好的太阳能电池是基于具有最低Cu含量的吸收层,其效率为8.1%,填充系数为59.8%,J(sc)= 31.1 mA / cm(2),V-oc = 434 mV。 (C)2015 Elsevier B.V.保留所有权利。

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