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机械化学合成双阳离子(Cs(CHNH))PbX卤化铅钙钛矿体系中相演变的粉末XRD、固态NMR和量热研究

A powder XRD, solid state NMR and calorimetric study of the phase evolution in mechanochemically synthesized dual cation (Cs(CHNH))PbX lead halide perovskite systems.

作者信息

Dintakurti Sai S H, Walker David, Bird Tobias A, Fang Yanan, White Tim, Hanna John V

机构信息

Department of Physics, University of Warwick, Coventry, West Midlands, CV4 7AL, UK.

Interdisciplinary Graduate School, Nanyang Technological University, Singapore 639798, Singapore.

出版信息

Phys Chem Chem Phys. 2022 Aug 3;24(30):18004-18021. doi: 10.1039/d2cp02131e.

Abstract

Methylammonium (MA) lead halide perovskites (MAPbX) have been widely investigated for photovoltaic applications, with the addition of Cs improving structural and thermal stability. This study reports the complete A site miscibility of Cs and MA cations in the lead chloride and lead bromide perovskites with nominal stoichiometric formulae (CsMA)Pb(Cl/Br) ( = 0, 0.13, 0.25, 0.37, 0.50, 0.63, 0.75, 0.87, 1). These suites of materials were synthesized mechanochemically as a simple, cost-effective synthesis technique to produce highly ordered, single phase particles. In contrast to previous studies using conventional synthetic routes that have reported significant solubility gaps, this solvent-free approach induces complete miscibility within the dual cation Cs/MA system, with the resultant structures exhibiting high short-range and long-range atomic ordering across the entire compositional range that are devoid of solvent inclusions and disorder. The subtle structural evolution from cubic to orthorhombic symmetry reflecting PbX octahedral tilting was studied using complementary high resolution TEM, powder XRD, multinuclear Cs/Pb/H MAS NMR, DSC, XPS and UV/vis approaches. The phase purity and exceptional structural order were reflected in the very high resolution HRTEM images presented from particles with crystallite sizes in the ∼80-170 nm range, and the stability and long lifetimes of the Br series (10-20 min) and the Cl series (∼30 s-1 min) under the 200 kV/146 μA e beam. Rietveld refinements associated with the room temperature PXRD study demonstrated that each system converged towards single phase compositions that were very close to the intended target stoichiometries, thus indicating the complete miscibility within these dual cation Cs/MA solid solution systems. The multinuclear MAS NMR data showed a distinct sensitivity to the changing solid solution compositions across the MAPbX-CsPbX partition. In particular, the Cs shifts demonstrated a sensitivity to the cubic-orthorhombic phase transition while the Cs s exhibited a pronounced sensitivity to the variable Cs cation mobility across the compositional range. Variable temperature PXRD studies facilitated the production of phase diagrams mapping the Cs/MA compositional space for the (CsMA)PbCl and (CsMA)PbBr solid solution series, while Tauc plots of the UV/vis data exhibited reducing bandgaps with increasing MA incorporation through ranges of cubic phases where octahedral tilting was absent.

摘要

甲基铵(MA)卤化铅钙钛矿(MAPbX)已被广泛研究用于光伏应用,添加铯(Cs)可提高结构和热稳定性。本研究报告了在标称化学计量式为(CsMA)Pb(Cl/Br)( = 0、0.13、0.25、0.37、0.50、0.63、0.75、0.87、1)的氯化铅和溴化铅钙钛矿中,Cs和MA阳离子在A位的完全混溶性。这些材料系列通过机械化学合成,这是一种简单、经济高效的合成技术,可生产高度有序的单相颗粒。与先前使用传统合成路线的研究报告的显著溶解度间隙不同,这种无溶剂方法在双阳离子Cs/MA系统中诱导了完全混溶性,所得结构在整个组成范围内表现出高的短程和长程原子有序性,且没有溶剂夹杂物和无序现象。使用互补的高分辨率透射电子显微镜、粉末X射线衍射、多核Cs/Pb/H魔角旋转核磁共振、差示扫描量热法、X射线光电子能谱和紫外/可见光谱方法研究了从立方对称到正交对称的微妙结构演变,这反映了PbX八面体的倾斜。相纯度和出色的结构有序性在微晶尺寸约为80 - 170 nm的颗粒的高分辨率高分辨透射电子显微镜图像中得到体现,并且在200 kV/146 μA电子束下,Br系列(10 - 20分钟)和Cl系列(约30秒 - 1分钟)具有稳定性和长寿命。与室温粉末X射线衍射研究相关的Rietveld精修表明,每个系统都趋向于非常接近预期目标化学计量比的单相组成,从而表明在这些双阳离子Cs/MA固溶体系统中存在完全混溶性。多核魔角旋转核磁共振数据显示对MAPbX - CsPbX分区中不断变化的固溶体组成具有明显的敏感性。特别是,Cs的化学位移对立方 - 正交相变敏感,而Cs的自旋晶格弛豫时间对整个组成范围内可变的Cs阳离子迁移率表现出明显的敏感性。可变温度粉末X射线衍射研究有助于绘制(CsMA)PbCl和(CsMA)PbBr固溶体系列的Cs/MA组成空间相图,而紫外/可见光谱数据的Tauc图显示,在不存在八面体倾斜的立方相范围内,随着MA掺入量的增加,带隙减小。

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