Zero-dimensional (CH3NH3)3Bi2I9 perovskite for optoelectronic applications

被引:183
作者
Oz, Senol [1 ]
Hebig, Jan-Christoph [2 ]
Jung, Eunhwan [1 ]
Singh, Trilok [1 ]
Lepcha, Ashish [1 ]
Olthof, Selina [6 ]
Flohre, Jan
Gao, Yajun [2 ,5 ]
German, Raphael [5 ]
van Loosdrecht, Paul H. M. [5 ]
Meerholz, Klaus [6 ]
Kirchartz, Thomas [2 ,3 ,4 ]
Mathur, Sanjay [1 ]
机构
[1] Univ Cologne, Inorgan Chem, Dept Chem, Greinstr 6, D-50939 Cologne, Germany
[2] Forschungszentrum Julich, IEK Photovolta 5, D-52425 Julich, Germany
[3] Univ Duisburg Essen, Fac Engn, Carl Benz Str 199, D-47057 Duisburg, Germany
[4] Univ Duisburg Essen, CENIDE, Carl Benz Str 199, D-47057 Duisburg, Germany
[5] Univ Cologne, Inst Phys 2, Zulpicherstr 77, D-50937 Cologne, Germany
[6] Univ Cologne, Phys Chem, Dept Chem, Luxemburgerstr 116, D-50939 Cologne, Germany
关键词
Organic-inorganic perovskite; (CH3NH3)(3)Bi2I9; Optoelectronic properties; Photoluminescence; Methylammonium bismuth iodide; Solar cells; HALIDE PEROVSKITES; OPTICAL-PROPERTIES; SOLAR-CELLS; ABSORPTION; EFFICIENCY; METAL;
D O I
10.1016/j.solmat.2016.01.035
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
We present the preparation and characterization of solution processed lead free films of zero dimensional methylammonium iodo bismuthate (CH3NH3)(3)Bi2I9 perovskite. Structural characterization reveals the formation of hexagonal micro-crystals with preferred growth orientation along the c-axis. The material exhibits a wide band gap of 2.9 eV and upon optical excitation the photoluminescence emission is observed at 1.65 eV (751 nm). Photoelectron spectroscopy confirms the stoichiometry of the (CH3NH3)(3)Bi2I9 perovskite and yields an ionization energy of 6.24 eV, while Raman spectra confirm the vibrational modes of the bioctahedral inorganic anion framework (Bi2I9)(3-) in the low wavenumber regime (< 200 cm(-1)) regime. Density Functional Theory (DFT) and Time-Dependent Density Functional Theory (TDDFT) are employed to evaluate the experimental results. We apply this novel bismuth-based hybrid perovskite in proof of principle simple heterojunction solar cell devices, which yield power conversion efficiencies of similar to 0.1%. Further enhancement is expected once the film morphology and device stack are optimized. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:195 / 201
页数:7
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