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首页> 外文期刊>Solar Energy >Influence of OLA and FA ligands on the optical and electronic properties of Cu_2ZnSn(S, Se)_4 thin films and solar cells prepared from nanoparticle inks
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Influence of OLA and FA ligands on the optical and electronic properties of Cu_2ZnSn(S, Se)_4 thin films and solar cells prepared from nanoparticle inks

机译:OLA和FA配体对纳米粒子油墨制备的Cu_2ZnSn(S,Se)_4薄膜和太阳能电池的光学和电子性能的影响

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摘要

The use of formamide (FA) as an alternative capping ligand to oleylamine (OLA) during the preparation of Cu2ZnSnS4(CZTS) nanoparticle inks was investigated. Photoluminescence properties of the selenised CZTS absorber layers revealed quasi-donor acceptor pairs (QDAP) as the main transition for carrier recombination with similar electrostatic potential fluctuations in both type of ligands. In OLA layers the transition shifts from QDAP to band-impurity as temperature rises. Solar cell devices fabricated from FA Cu2ZnSn(Se,S)4were shunted due to the high porosity of the film while in contrast, the combination of FA + OLA absorber yielded reduced back contact barrier height, lower series resistance and higher fill factor and efficiency compared to OLA devices. This is a direct result of the removal of the fine grain carbon rich layer from the back contact interface usually present in films prepared with OLA only.
机译:研究了在制备Cu2ZnSnS4(CZTS)纳米粒子墨水过程中使用甲酰胺(FA)作为油胺(OLA)的替代封端配体的方法。硒化的CZTS吸收层的光致发光特性表明,准给体受体对(QDAP)是载流子重组的主要跃迁,两种配体中都有类似的静电势波动。在OLA层中,随着温度升高,过渡从QDAP转变为带杂质。由于薄膜的高孔隙率,由FA Cu2ZnSn(Se,S)4制成的太阳能电池器件被分流,而相比之下,FA + OLA吸收剂的组合产生的背接触势垒高度降低,串联电阻更低,填充系数和效率更高到OLA设备。这是直接从通常仅用OLA制备的薄膜中存在的背面接触界面上去除细晶粒碳富集层的直接结果。

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