Silver Bismuth Sulfoiodide Solar Cells: Tuning Optoelectronic Properties by Sulfide Modification for Enhanced Photovoltaic Performance

被引:113
|
作者
Pai, Narendra [1 ]
Lu, Jianfeng [2 ]
Gengenbach, Thomas R. [3 ]
Seeber, Aaron [3 ]
Chesman, Anthony S. R. [3 ,4 ]
Jiang, Liangcong [5 ]
Senevirathna, Dimuthu C. [1 ]
Andrews, Philip C. [1 ]
Bach, Udo [2 ,3 ,4 ,6 ]
Cheng, Yi-Bing [5 ,6 ,7 ]
Simonov, Alexandr N. [1 ,8 ]
机构
[1] Monash Univ, Sch Chem, Clayton, Vic 3800, Australia
[2] Monash Univ, Dept Chem Engn, Clayton, Vic 3800, Australia
[3] Commonwealth Sci & Ind Res Org Mfg, Clayton, Vic 3168, Australia
[4] Melbourne Ctr Nanofabricat, Clayton, Vic 3168, Australia
[5] Monash Univ, Dept Mat Sci & Engn, Clayton, Vic 3800, Australia
[6] Monash Univ, ARC Ctr Excellence Exciton Sci, Clayton, Vic 3800, Australia
[7] Wuhan Univ Technol, State Key Lab Adv Technol Mat Synth & Proc, Wuhan 430070, Hubei, Peoples R China
[8] Monash Univ, ARC Ctr Excellence Electromat Sci, Clayton, Vic 3800, Australia
基金
澳大利亚研究理事会;
关键词
bandgap; iodide sulfide; mixed anion; valence band; lead free; CRYSTAL-STRUCTURE; THIN-FILMS; IODIDE; PEROVSKITES; AGBIS2; DEPOSITION; EFFICIENCY; SULFUR;
D O I
10.1002/aenm.201803396
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Silver bismuth iodides (AgaBibIa+3b) are nontoxic and comparatively cheap photovoltaic materials, but their wide bandgaps and downshifted valence band edges limit their performance as light absorbers in solar cells. Herein, a strategy is introduced to tune the optoelectronic properties of AgaBibIa+3b by partial anionic substitution with the sulfide dianion. A consistent narrowing of the bandgap by 0.1 eV and an upshift of the valence band edge by 0.1-0.3 eV upon modification with sulfide are demonstrated for AgBiI4, Ag2BiI5, Ag3BiI6, and AgBi2I7 compositions. Solar cells based on silver bismuth sulfoiodides embedded into a mesoporous TiO2 electron-transporting scaffold, and a poly[bis(4-phenyl)(2,4,6-trimethylphenyl)amine] hole-transporting layer significantly outperform devices based on sulfide-free materials, mainly due to enhancements in the photocurrent by up to 48%. A power conversion efficiency of 5.44 +/- 0.07% (J(sc) = 14.6 +/- 0.1 mA cm(-2); V-oc = 569 +/- 3 mV; fill factor = 65.7 +/- 0.3%) under 1 sun irradiation and stability under ambient conditions for over a month are demonstrated. The results reported herein indicate that further improvements should be possible with this new class of photovoltaic materials upon advances in the synthetic procedures and an increase in the level of sulfide anionic substitution.
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页数:11
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