Direct investigation of the reorientational dynamics of A-site cations in 2D organic-inorganic hybrid perovskite by solid-state NMR

Author:

Lin Cheng-ChiehORCID,Huang Shing-Jong,Wu Pei-Hao,Chen Tzu-Pei,Huang Chih-Ying,Wang Ying-Chiao,Chen Po-Tuan,Radeva Denitsa,Petrov Ognyan,Gelev Vladimir M.,Sankar RamanORCID,Chen Chia-Chun,Chen Chun-WeiORCID,Yu Tsyr-YanORCID

Abstract

AbstractLimited methods are available for investigating the reorientational dynamics of A-site cations in two-dimensional organic–inorganic hybrid perovskites (2D OIHPs), which play a pivotal role in determining their physical properties. Here, we describe an approach to study the dynamics of A-site cations using solid-state NMR and stable isotope labelling. 2H NMR of 2D OIHPs incorporating methyl-d3-ammonium cations (d3-MA) reveals the existence of multiple modes of reorientational motions of MA. Rotational-echo double resonance (REDOR) NMR of 2D OIHPs incorporating 15N- and ¹³C-labeled methylammonium cations (13C,15N-MA) reflects the averaged dipolar coupling between the C and N nuclei undergoing different modes of motions. Our study reveals the interplay between the A-site cation dynamics and the structural rigidity of the organic spacers, so providing a molecular-level insight into the design of 2D OIHPs.

Funder

Ministry of Education (Ministry of Education, Republic of China

Academia Sinica

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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