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Determination of the nonradiative conversion efficiency of lead mixed-halide perovskites using optical and photothermal spectroscopy

机译:光热光谱法测定铅混合卤化卤化物钙酸盐的非相反转化效率

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Mixed-halide organic-inorganic hybrid perovskites are considered promising light-absorbing materials in the development of solar cells related to the obtained high-power conversion efficiency. Current efforts are focused on the study of the energy-conversion mechanisms, where the nonradiative recombination pathway is the least explored. In this work, a combination of optical and photoacoustic spectroscopies is used to determine the visible spectral light-into-heat conversion efficiency of I ead-based m ixed-halide o rganic-inorganic h ybrid perovskites in a semicomplete n-i-p mesoscopic perovskite solar cell (PSC). A remarkable average conversion efficiency of about 87% has been found for the nonradiative combination in the perovskite, with the estimated composition FA(0.71)MA(0.29)PbI(2.9)Br(0.1) in the wavelength range of 400 to 800 nm. As a result, 13% of the incident light is transformed in radiative recombination processes and/or photodegradation of the material. Furthermore, the extinction coefficient and refractive index of the material are reported, and it was found that the optical constants and the optical absorption in the short-wavelength range are significantly smaller than previously reported for MAPbI(3). (C) 2020 Optical Society of America
机译:混合卤化物有机 - 无机杂交钙酸盐被认为是与获得的高功率转换效率相关的太阳能电池的开发光吸收材料。目前的努力集中于对能量转换机制的研究,其中非相互作用途径最不探索。在这项工作中,光学和光声光谱的组合用于确定在半完整辊隙介质钙钛矿太阳能电池中( PSC)。已经发现钙钛矿中的非抗体组合的显着平均转化效率约为87%,其中估计的组合物Fa(0.71)MA(0.29)PBI(2.9)Br(0.1)在400至800nm的波长范围内。结果,13%的入射光在辐射重组过程中转化和/或材料光降解。此外,报道了材料的消光系数和折射率,并且发现光学常数和短波长度范围内的光学吸收显着小于先前Mapbi(3)。 (c)2020美国光学学会

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    《Applied optics》 |2020年第13期|共9页
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