Charge-Carrier Trapping and Radiative Recombination in Metal Halide Perovskite Semiconductors

被引:95
作者
Trimpl, Michael J. [1 ,2 ]
Wright, Adam D. [1 ]
Schutt, Kelly [1 ]
Buizza, Leonardo R. V. [1 ]
Wang, Zhiping [1 ]
Johnston, Michael B. [1 ]
Snaith, Henry J. [1 ]
Mueller-Buschbaum, Peter [2 ,3 ]
Herz, Laura M. [1 ]
机构
[1] Univ Oxford, Dept Phys, Clarendon Lab, Parks Rd, Oxford OX1 3PU, England
[2] Tech Univ Munich, Phys Dept, Lehrstuhl Funkt Mat, James Franck Str 1, D-85748 Garching, Germany
[3] Heinz Maier Leibnitz Zentrum, Lichtenbergstr 1, D-85748 Garching, Germany
基金
英国工程与自然科学研究理事会;
关键词
charge-carrier accumulation; perovskite; photoluminescence; trap states; trapping; TEMPERATURE-DEPENDENCE; AUGER RECOMBINATION; NONRADIATIVE LOSSES; DYNAMICS; LIFETIMES; PHOTOLUMINESCENCE; EMISSION; FILMS; CH3NH3PBI3; EFFICIENCY;
D O I
10.1002/adfm.202004312
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Trap-related charge-carrier recombination fundamentally limits the performance of perovskite solar cells and other optoelectronic devices. While improved fabrication and passivation techniques have reduced trap densities, the properties of trap states and their impact on the charge-carrier dynamics in metal-halide perovskites are still under debate. Here, a unified model is presented of the radiative and nonradiative recombination channels in a mixed formamidinium-cesium lead iodide perovskite, including charge-carrier trapping, de-trapping and accumulation, as well as higher-order recombination mechanisms. A fast initial photoluminescence (PL) decay component observed after pulsed photogeneration is demonstrated to result from rapid localization of free charge carriers in unoccupied trap states, which may be followed by de-trapping, or nonradiative recombination with free carriers of opposite charge. Such initial decay components are shown to be highly sensitive to remnant charge carriers that accumulate in traps under pulsed-laser excitation, with partial trap occupation masking the trap density actually present in the material. Finally, such modelling reveals a change in trap density at the phase transition, and disentangles the radiative and nonradiative charge recombination channels present in FA(0.95)Cs(0.05)PbI(3,)accurately predicting the experimentally recorded PL efficiencies between 50 and 295 K, and demonstrating that bimolecular recombination is a fully radiative process.
引用
收藏
页数:12
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