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


ABSTRACT: Limited 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.

SUBMITTER: Lin CC 

PROVIDER: S-EPMC8938534 | biostudies-literature | 2022 Mar

REPOSITORIES: biostudies-literature

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

Lin Cheng-Chieh CC   Huang Shing-Jong SJ   Wu Pei-Hao PH   Chen Tzu-Pei TP   Huang Chih-Ying CY   Wang Ying-Chiao YC   Chen Po-Tuan PT   Radeva Denitsa D   Petrov Ognyan O   Gelev Vladimir M VM   Sankar Raman R   Chen Chia-Chun CC   Chen Chun-Wei CW   Yu Tsyr-Yan TY  

Nature communications 20220321 1


Limited 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. <sup>2</sup>H NMR of 2D OIHPs incorporating methyl-d<sub>3</sub>-ammonium cations (d<sub>3</sub>-MA) reveals the existence of multiple modes of reo  ...[more]

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