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具有高X射线光响应的三维碘化铅钙钛矿类杂化物

Three-Dimensional Lead Iodide Perovskitoid Hybrids with High X-ray Photoresponse.

作者信息

Li Xiaotong, He Yihui, Kepenekian Mikaël, Guo Peijun, Ke Weijun, Even Jacky, Katan Claudine, Stoumpos Constantinos C, Schaller Richard D, Kanatzidis Mercouri G

机构信息

Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208, United States.

Univ Rennes, ENSCR, INSA Rennes, CNRS, ISCR (Institut des Sciences Chimiques de Rennes), UMR 6226, Rennes F-35000, France.

出版信息

J Am Chem Soc. 2020 Apr 8;142(14):6625-6637. doi: 10.1021/jacs.0c00101. Epub 2020 Mar 26.

Abstract

Large organic A cations cannot stabilize the 3D perovskite AMX structure because they cannot be accommodated in the cubo-octhedral cage (do not follow the Goldschmidt tolerance factor rule), and they generally template low-dimensional structures. Here we report that the large dication aminomethylpyridinium (AMPY) can template novel 3D structures which resemble conventional perovskites. They have the formula (AMPY)MI ( = 3 or 4, M = Sn or Pb) which is double of the AMX formula. However, because of the steric requirement of the Goldschmidt tolerance factor rule, it is impossible for (AMPY)MI to form proper perovskite structures. Instead, a combination of corner-sharing and edge-sharing connectivity is adopted in these compounds leading to the new 3D structures. DFT calculations reveal that the compounds are indirect band gap semiconductors with direct band gaps presenting at slightly higher energies and dispersive electronic bands. The indirect band gaps of the Sn and Pb compounds are ∼1.7 and 2.0 eV, respectively, which is slightly higher than the corresponding AMI 3D perovskites. The Raman spectra for the compounds are diffuse, with a broad rising central peak at very low frequencies around 0 cm, a feature that is characteristic of dynamical lattices, high anharmonicity, and dissipative vibrations very similar to the 3D AMX perovskites. Devices of (3AMPY)PbI crystals exhibit clear photoresponse under ambient light without applied bias, reflecting a high carrier mobility (μ) and long carrier lifetime (τ). The devices also exhibit sizable X-ray generated photocurrent with a high μτ product of ∼1.2 × 10 cm /V and an X-ray sensitivity of 207 μC·Gy·cm.

摘要

大的有机A阳离子无法稳定三维钙钛矿AMX结构,因为它们无法容纳在立方八面体笼中(不符合戈尔德施密特容忍因子规则),并且它们通常会形成低维结构的模板。在此,我们报告大的双阳离子氨甲基吡啶鎓(AMPY)可以形成类似于传统钙钛矿的新型三维结构。它们的化学式为(AMPY)MI(I = 3或4,M = Sn或Pb),是AMX化学式的两倍。然而,由于戈尔德施密特容忍因子规则的空间要求,(AMPY)MI不可能形成合适的钙钛矿结构。相反,这些化合物采用了角共享和边共享连接的组合,从而形成了新的三维结构。密度泛函理论计算表明,这些化合物是间接带隙半导体,在略高的能量处存在直接带隙,且电子能带具有色散性。Sn和Pb化合物的间接带隙分别约为1.7 eV和2.0 eV,略高于相应的AMI三维钙钛矿。这些化合物的拉曼光谱是漫散的,在非常低的频率(约0 cm)处有一个宽阔的上升中心峰,这一特征是动态晶格、高非谐性以及与三维AMX钙钛矿非常相似的耗散振动的特征。(3AMPY)PbI晶体器件在无外加偏压的环境光下表现出明显的光响应,这反映出其具有高载流子迁移率(μ)和长载流子寿命(τ)。这些器件还表现出可观的X射线产生的光电流,其μτ乘积约为1.2×10 cm²/V,X射线灵敏度为207 μC·Gy⁻¹·cm⁻²。

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