Wolffs Jop W, Gómez Jennifer S, Janssen Gerrit E, de Wijs Gilles A, Kentgens Arno P M
Institute for Molecules and Materials, Radboud Universiteit, Heyendaalseweg 135, 6525 AJ Nijmegen, the Netherlands.
Magn Reson (Gott). 2025 Jul 16;6(2):143-155. doi: 10.5194/mr-6-143-2025. eCollection 2025.
Nuclear quadrupole resonance (NQR), a technique related to nuclear magnetic resonance, is extremely sensitive to local crystal composition and structure. Unfortunately, in disordered materials, this sensitivity also leads to very large linewidths, presenting a technical challenge and requiring a serious time investment to get a full spectrum. Here, we describe our newly developed, automated NQR set-up to acquire high-quality wide-line spectra. Using this set-up, we carried out I NQR on three mixed-cation lead-halide perovskites (LHPs) of the form MA FA PbI (where MA denotes methylammonium; FA denotes formamidinium; and 0.25, 0.50 and 0.75) at various temperatures. We achieve a signal-to-noise ratio of up to for lineshapes with a full width at half maximum of acquired with a spectral width of 20 MHz in the course of 2-3 d. The spectra, which at least partially exhibit features encoding structural information, are interpreted using a statistical model. This model finds a degree of MA-MA and FA-FA clustering ( ). This proof-of-principle for both the wide-line NQR set-up and the statistical model widens the applicability of an underutilised avenue of non-invasive structural research.
核四极共振(NQR)是一种与核磁共振相关的技术,对局部晶体组成和结构极为敏感。不幸的是,在无序材料中,这种敏感性也会导致非常大的线宽,这带来了技术挑战,并且需要投入大量时间才能获得完整的光谱。在此,我们描述了我们新开发的自动化NQR装置,用于获取高质量的宽线光谱。使用该装置,我们在不同温度下对三种形式为MA FA PbI(其中MA表示甲铵;FA表示甲脒;且 分别为0.25、0.50和0.75)的混合阳离子铅卤化物钙钛矿(LHP)进行了I NQR实验。在2 - 3天的时间里,我们在20 MHz的光谱宽度下,对于半高宽为 的线形,实现了高达 的信噪比。这些光谱至少部分展现出编码结构信息的特征,并使用统计模型进行了解释。该模型发现了一定程度的MA - MA和FA - FA聚类( )。这种宽线NQR装置和统计模型的原理验证拓宽了一种未充分利用的非侵入性结构研究途径的适用性。