Routes to increase performance for antimony selenide solar cells using inorganic hole transport layers

被引:3
作者
Campbell, Stephen [1 ]
Phillips, Laurie J. [2 ]
Major, Jonathan D. [2 ]
Hutter, Oliver S. [1 ]
Voyce, Ryan [1 ]
Qu, Yongtao [1 ]
Beattie, Neil S. [1 ]
Zoppi, Guillaume [1 ]
Barrioz, Vincent [1 ]
机构
[1] Northumbria Univ, Dept Math Phys & Elect Engn, Newcastle Upon Tyne, England
[2] Univ Liverpool, Dept Phys, Liverpool, England
来源
FRONTIERS IN CHEMISTRY | 2022年 / 10卷
基金
英国工程与自然科学研究理事会;
关键词
Sb-2; Se-3; photovoltaic; inorganic hole transport layers; SCAPs; thin films; THIN-FILM; OPTICAL-PROPERTIES; WORK-FUNCTION; SB2SE3; CONTACT; GRAIN; ENHANCEMENT; EFFICIENCY;
D O I
10.3389/fchem.2022.954588
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Simple compound antimony selenide (Sb2Se3) is a promising emergent light absorber for photovoltaic applications benefiting from its outstanding photoelectric properties. Antimony selenide thin film solar cells however, are limited by low open circuit voltage due to carrier recombination at the metallic back contact interface. In this work, solar cell capacitance simulator (SCAPS) is used to interpret the effect of hole transport layers (HTL), i.e., transition metal oxides NiO and MoO x thin films on Sb2Se3 device characteristics. This reveals the critical role of NiO and MoO x in altering the energy band alignment and increasing device performance by the introduction of a high energy barrier to electrons at the rear absorber/metal interface. Close-space sublimation (CSS) and thermal evaporation (TE) techniques are applied to deposit Sb2Se3 layers in both substrate and superstrate thin film solar cells with NiO and MoO x HTLs incorporated into the device structure. The effect of the HTLs on Sb2Se3 crystallinity and solar cell performance is comprehensively studied. In superstrate device configuration, CSS-based Sb2Se3 solar cells with NiO HTL showed average improvements in open circuit voltage, short circuit current density and power conversion efficiency of 12%, 41%, and 42%, respectively, over the standard devices. Similarly, using a NiO HTL in TE-based Sb2Se3 devices improved open circuit voltage, short circuit current density and power conversion efficiency by 39%, 68%, and 92%, respectively.
引用
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页数:15
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