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Investigation of the SnS/Cu2ZnSnS4 Interfaces in Kesterite Thin-Film Solar Cells

机译:黄铜矿薄膜太阳能电池中sns / Cu2Znsns4界面的研究

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摘要

Kesterite Cu2ZnSnS4 (CZTS), having only earth abundant elements, is a promising solar cell material. Nevertheless, the impact of the SnS secondary phase, which often forms alongside CZTS synthesis at high annealing temperature, on CZTS solar cells is poorly studied. We confirm, by means of X-ray diffraction, Raman scattering, and energy dispersive X-ray spectroscopy mapping, that this phase tends to segregate at both the surface and the back side of annealed CZTS films with Cu-poor and Zn-rich composition. Using electron beam-induced current measurements, it is further demonstrated that the formation of SnS on the CZTS surface is harmful for solar cells, whereas the SnS phase can be beneficial for solar cells when it segregates on the CZTS rear. This positive contribution of SnS could stem from a passivation effect at the CZTS/SnS rear interface. This work opens new possibilities for an alternative interface development for kesterite-based photovoltaic technology.
机译:仅含有丰富的地球元素的Kesterite Cu2ZnSnS4(CZTS)是一种很有前途的太阳能电池材料。然而,人们很少研究SnS第二相(通常在高退火温度下与CZTS合成同时形成)对CZTS太阳能电池的影响。我们通过X射线衍射,拉曼散射和能量色散X射线光谱图确认,该相倾向于在贫铜和富锌成分的退火CZTS膜的表面和背面偏析。 。使用电子束感应的电流测量,进一步证明在CZTS表面上形成SnS对太阳能电池有害,而当SnS相在CZTS背面偏析时,SnS相可能对太阳能电池有利。 SnS的这种积极贡献可能源于CZTS / SnS后界面的钝化作用。这项工作为基于硅藻土的光伏技术的替代界面开发开辟了新的可能性。

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