Bandgap reduction of bismuth tri-iodide via cesium tin iodide addition aimed toward lead-free solar cell applications

被引:1
|
作者
Anugrah, Aditya Wahyu [1 ]
Raifuku, Itaru [2 ]
Kawanishi, Hidenori [1 ]
Uraoka, Yukiharu [1 ]
机构
[1] Nara Inst Sci & Technol, Grad Sch Sci & Technol, Div Mat Sci, Ikoma, Nara 6300101, Japan
[2] Aoyama Gakuin Univ, Coll Sci & Engn, Dept Elect Engn & Elect, Sagamihara, Kanagawa 2525258, Japan
关键词
bismuth iodide; perovskite; lead-free; band alignment; solar cell; HALIDE PEROVSKITES; EFFICIENCY; MOBILITY; BII3; GAP;
D O I
10.1088/1361-6463/ada456
中图分类号
O59 [应用物理学];
学科分类号
摘要
Bismuth-based perovskites are promising materials for non-toxic solar cell applications owing to their air stability and high absorption coefficients. However, the wide bandgaps of bismuth-based perovskites limit their performance, rendering them unsuitable for single-junction solar cells. In this study, we successfully demonstrate that the bandgap of bismuth tri-iodide (BiI3) can be reduced by adding a mixture of CsI and SnI2 (CTI: cesium tin iodide). The addition of CTI changes the chemical states, surface morphology, optical properties, and energy-level structure of BiI3. The bandgap energy decreases from 1.75 eV (pure BiI3) to 1.41 eV (CTI added) as evidenced by UV-Vis spectrophotometry measurements. The valence band maximum (VBM) energy was estimated using photoemission yield spectroscopy (PYS). PYS measurements revealed that adding CTI to BiI3 lowered the VBM position. The bandgap narrowing mechanism was further explained by the band alignment, where the addition of CTI effectively adjusted the VBM and conduction band minimum positions to lower the energy levels. The device performance of the (CTI:BiI3) solar cells was investigated, and an improvement in power conversion efficiency was observed, mainly due to an enhancement in the open-circuit voltage and short-circuit current density.
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页数:10
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