X射线光电子能谱
捷克先令
锡
密度泛函理论
材料科学
价(化学)
光电发射光谱学
角分辨光电子能谱
反向光电发射光谱
电子结构
谱线
价带
硫化物
带隙
分析化学(期刊)
化学
核磁共振
计算化学
物理
光电子学
有机化学
色谱法
天文
冶金
作者
Thomas J. Whittles,Lee A. Burton,Jonathan M. Skelton,Aron Walsh,T. D. Veal,V.R. Dhanak
标识
DOI:10.1021/acs.chemmater.6b00397
摘要
Tin sulfide solar cells show relatively poor efficiencies despite attractive photovoltaic properties, and there is difficulty in identifying separate phases, which are also known to form during Cu 2 ZnSnS 4 depositions. We present X-ray photoemission spectroscopy (XPS) and inverse photoemission spectroscopy measurements of single crystal SnS, SnS 2, and Sn 2 S 3, with electronic-structure calculations from density functional theory (DFT). Differences in the XPS spectra of the three phases, including a large 0.9 eV shift between the 3d 5/2 peak for SnS and SnS 2, make this technique useful when identifying phase-pure or mixed-phase systems. Comparison of the valence band spectra from XPS and DFT reveals extra states at the top of the valence bands of SnS and Sn 2 S 3, arising from the hybridization of lone pair electrons in Sn(II), which are not present for Sn(IV), as found in SnS 2 . This results in relatively low ionization potentials for SnS (4.71 eV) and Sn 2 S 3 (4.66 eV), giving a more comprehensive explanation as to the origin of the poor efficiencies. We also demonstrate, by means of a band alignment, the large band offsets of SnS and Sn 2 S 3 from other photovoltaic materials and highlight the detrimental effect on cell performance of secondary tin sulfide phase formation in SnS and CZTS films.
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