Current Enhancement via a TiO2 Window Layer for CSS Sb2Se3 Solar Cells: Performance Limits and High VOC

被引:80
作者
Phillips, Laurie J. [1 ]
Savory, Christopher N. [2 ,3 ]
Hutter, Oliver S. [1 ]
Yates, Peter J. [1 ]
Shiel, Huw [1 ]
Mariotti, Silvia [1 ]
Bowen, Leon [4 ]
Birkett, Max [1 ]
Durose, Ken [1 ]
Scanlon, David O. [2 ,3 ,5 ]
Major, Jonathan D. [1 ]
机构
[1] Univ Liverpool, Stephenson Inst Renewable Energy, Liverpool L69 3BX, Merseyside, England
[2] UCL, Dept Chem, London WC1H 0AJ, England
[3] UCL, Thomas Young Ctr, London WC1E 6BT, England
[4] Univ Durham, GJ Russell Microscopy Facil, Durham DH1, England
[5] Diamond Light Source Ltd, Diamond House,Harwell Sci & Innovat Campus, Didcot OX11 0DE, Oxon, England
来源
IEEE JOURNAL OF PHOTOVOLTAICS | 2019年 / 9卷 / 02期
基金
英国工程与自然科学研究理事会;
关键词
Antimony selenide (Sb2Se3); CdS; close-spaced sublimation (CSS); spectroscopic limited maximum efficiency (SLME); TiO2; titanium; CLOSE-SPACED SUBLIMATION; INITIO MOLECULAR-DYNAMICS; TOTAL-ENERGY CALCULATIONS; ANTIMONY SELENIDE; CRYSTAL-STRUCTURE; THIN-FILMS; EFFICIENCY; SEMICONDUCTORS; STABILITY;
D O I
10.1109/JPHOTOV.2018.2885836
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Antimony selenide (Sb2Se3) is an emerging chalco-genide photovoltaic absorber material that has been the subject of increasing interest in recent years, demonstrating rapid efficiency increases with a material that is simple, abundant, and stable. This paper examines the material from both a theoretical and practical standpoint. The theoretical viability of Sb2Se3 as a solar photovoltaic material is assessed and the maximum spectroscopically limited performance is estimated, with a 200 nm film expected to be capable of achieving a photon conversion efficiency of up to 28.2%. By adapting an existing CdTe close-spaced sublimation (CSS) process, Sb2Se3 material with large rhubarb-like grains is produced and solar cells are fabricated. We show that the established CdS window layer is unsuitable for use with CSS, due to intermixing during higher temperature processing. Substituting CdS with the more stable TiO2, a power conversion efficiency of 5.5% and an open-circuit voltage V-oc of 0.45 V are achieved; the voltage exceeding current champion devices. This paper demonstrates the potential of CSS for scalable Sb2Se3 deposition and highlights the promise of Sb2Se3 as an abundant and low-toxicity material for solar applications.
引用
收藏
页码:544 / 551
页数:8
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