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Determination of the optical constants of ligand-free organic lead halide perovskite quantum dots

机译:无配体有机卤化铅钙钛矿量子点光学常数的测定

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摘要

Precise knowledge of the optical constants of perovskite lead halide quantum dots (QDs) is required to both understand their interaction with light and to rationally design and optimize the devices based on them. However, their determination from colloidal nanocrystal suspensions, or films made out of them, remains elusive, as a result of the difficulty in disentangling the optical constants of the organic capping ligands and those of the semiconductor itself. In this work, we extract the refractive index and extinction coefficient of ligand-free methylammonium lead iodide (MAPbI3) and bromide (MAPbBr3) nanocrystals. In order to prevent the use of organic ligands in the preparation, we follow a scaffold assisted synthetic procedure, which yields a composite film of high optical quality that can be independently and precisely characterized and modelled. In this way, the contribution of the guest nano-crystals can be successfully discriminated from that of the host matrix. Using a Kramers-Kronig consistent dispersion model along with an effective medium approximation, it is possible to derive the optical constants of the QDs by fitting the spectral dependence of light transmitted and reflected at different angles and polarizations. Our results indicate a strong dependence of the optical constants on the QD size. Small nanocrystals show remarkably large values of the extinction coefficient compared to their bulk counterparts. This analysis opens the door to the rigorous modelling of solar cells and light-emitting diodes with active layers based on perovskite QDs.
机译:精确的光学常数的知识钙钛矿卤化铅量子点(量子点)需要理解他们的互动光和合理设计和优化基于他们的设备。决心从胶状纳米晶体悬浮液或电影,依然存在难以捉摸的,困难的结果理的光学常数有机覆盖配体和的半导体本身。折射率和消光系数的ligand-free methylammonium碘化铅(MAPbI3)和溴化(MAPbBr3)纳米晶体。为防止有机配体的使用准备,我们遵循一个支架辅助合成过程中,复合收益率薄膜的光学质量高独立和精确的特点模仿。客人纳米晶可以成功歧视与主机矩阵。Kramers-Kronig一致的色散模型随着一个有效介质近似,它可以推导出光学常数的量子点的拟合的光谱依赖性光传输和反映不同角度和极化。强烈的依赖的光学常数QD大小。的消光系数值相比大部分同行。门严格的太阳能电池和造型基于发光二极管与活性层量子点钙钛矿。

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