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使用单晶测定的CHNHPb(IBr)的晶体系统和晶格参数:维加德定律的有效性

Crystal Systems and Lattice Parameters of CHNHPb(IBr) Determined Using Single Crystals: Validity of Vegard's Law.

作者信息

Nakamura Yuiga, Shibayama Naoyuki, Hori Akiko, Matsushita Tomonori, Segawa Hiroshi, Kondo Takashi

机构信息

Department of Materials Engineering, The University of Tokyo, Tokyo, Japan.

Department of General Systems Studies, Graduate School of Arts and Sciences, The University of Tokyo, Tokyo, Japan.

出版信息

Inorg Chem. 2020 May 18;59(10):6709-6716. doi: 10.1021/acs.inorgchem.9b03421. Epub 2020 Mar 18.

Abstract

Metal halide perovskites are promising materials for light absorbers in solar cell applications. Use of the Br/I system enables us to control band gap energy and improves the efficiency of solar cells. Precise knowledge of lattice parameters and band gap energies as functions of compositions are crucially important for developing the devices using those materials. In this study, we have determined lattice parameters and band gap energies of CHNHPb(IBr), one of the most intensively studied mix-halide perovskites, as functions of Br content . We measured accurate Br contents and lattice parameters of CHNHPb(IBr) (0 ≤ ≤ 1) using single-crystalline samples by X-ray photoelectron spectroscopy (XPS) and X-ray diffraction (XRD) measurements, respectively. The CHNHPb(IBr) crystal system is tetragonal for ≤ 0.06 and cubic for ≥ 0.08 at 300 K. Lattice parameters of CHNHPb(IBr) strictly follow Vegard's law; i.e., they are linearly dependent on . We give linear expressions of of lattice parameters for the tetragonal and cubic phases of CHNHPb(IBr) at 300 K. We have shown that these expressions can be used for determining the Br contents of CHNHPb(IBr) polycrystalline thin-film samples based on XRD measurements and, in addition, demonstrated that XPS measurements on polycrystalline samples may be erroneous because of impure ingredients in the samples. Furthermore, we determined band gap energies of CHNHPb(IBr) (0 ≤ ≤ 1) at room temperature using absorption spectra of polycrystalline thin films taking account of excitonic effects.

摘要

金属卤化物钙钛矿是太阳能电池应用中很有前景的光吸收材料。使用Br/I体系能够控制带隙能量并提高太阳能电池的效率。准确了解晶格参数和带隙能量随成分的变化关系对于开发使用这些材料的器件至关重要。在本研究中,我们确定了CHNHPb(IBr)(一种研究最为深入的混合卤化物钙钛矿)的晶格参数和带隙能量随Br含量的变化关系。我们分别通过X射线光电子能谱(XPS)和X射线衍射(XRD)测量,使用单晶样品精确测量了CHNHPb(IBr)(0≤≤1)的Br含量和晶格参数。在300K时,CHNHPb(IBr)晶体体系在≤0.06时为四方晶系,在≥0.08时为立方晶系。CHNHPb(IBr)的晶格参数严格遵循维加德定律;即它们与呈线性相关。我们给出了300K时CHNHPb(IBr)四方相和立方相晶格参数的线性表达式。我们已经表明,这些表达式可用于基于XRD测量确定CHNHPb(IBr)多晶薄膜样品的Br含量,此外,还证明了对多晶样品进行XPS测量可能会因样品中存在不纯成分而产生误差。此外,我们考虑激子效应,利用多晶薄膜的吸收光谱确定了室温下CHNHPb(IBr)(0≤≤1)的带隙能量。

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