首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Solution processed NiOx hole-transporting material for all-inorganic planar heterojunction Sb2S3 solar cells
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Solution processed NiOx hole-transporting material for all-inorganic planar heterojunction Sb2S3 solar cells

机译:溶液加工全无机平面异质结SB2S3太阳能电池的NIOX空穴传输材料

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摘要

Light-harvesting material Sb2S3 has recently attracted tremendous attention due to its excellent photovoltaic properties. Extensive efforts have been exerted to improve the power conversion efficiency through process innovation, interface modification and band gap engineering. In this study, we report an all-inorganic planar heterojunction Sb2S3 solar cell using NiOx as hole extraction material, which is deposited from preformed NiOx nanoparticle solution. We demonstrate that the device performance can be significantly enhanced upon O-2 plasma treatment on NiOx layer. As a result, O-2 plasma-treated NiOx hole conductor leads to a 43% enhancement in power conversion efficiency when compared to untreated one, delivering an efficiency of 3.51%. The enhancement mechanisms are interpreted in terms of electronic structures and interfacial charge transport properties characterized by synchrotron-based high resolution ultraviolet photoelectron spectroscopy and electro-chemical impedance spectroscopy. This work provides a choice of novel inorganic hole-transporting material for the preparation of stable and efficient all-inorganic solar cell device based on Sb2S3 as well as Sb-2(S,Se)(3).
机译:光收获材料SB2S3由于其优异的光伏特性,最近引起了巨大的关注。通过流程创新,接口改造和带隙工程,已经施加了广泛的努力来提高电力转换效率。在这项研究中,我们使用NiOx作为空穴萃取材料报告全无机平面异质结SB2S3太阳能电池,其沉积从预制的NiOx纳米粒子溶液中。我们证明,在NIOx层O-2等离子体处理时可以显着提高设备性能。结果,与未处理的相比,O-2等离子体处理的NiOx孔导体在功率转换效率的增强中产生43%,从而提供3.51%的效率。增强机制在电子结构和界面电荷传输特性方面被解释,其特征在于基于同步的高分辨率紫外线光电子能谱和电化学阻抗光谱。该工作提供了一种基于SB2S3的稳定和高效的全无机太阳能电池装置以及SB-2(S SE)(3)的新型无机空穴传输材料的选择。

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