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利用固态核磁共振光谱表征固体聚合物和混合电解质中的分子结构与动力学

Use of Solid-State NMR Spectroscopy for the Characterization of Molecular Structure and Dynamics in Solid Polymer and Hybrid Electrolytes.

作者信息

Foran Gabrielle, Verdier Nina, Lepage David, Malveau Cédric, Dupré Nicolas, Dollé Mickaël

机构信息

Département of Chemistry, Université de Montréal, 1375 Avenue Thérèse-Lavoie-Roux, Montréal, QC H2V 0B3, Canada.

Université de Nantes, CNRS, Institut des Matériaux Jean Rouxel, IMN, F-44000 Nantes, France.

出版信息

Polymers (Basel). 2021 Apr 8;13(8):1207. doi: 10.3390/polym13081207.

Abstract

Solid-state NMR spectroscopy is an established experimental technique which is used for the characterization of structural and dynamic properties of materials in their native state. Many types of solid-state NMR experiments have been used to characterize both lithium-based and sodium-based solid polymer and polymer-ceramic hybrid electrolyte materials. This review describes several solid-state NMR experiments that are commonly employed in the analysis of these systems: pulse field gradient NMR, electrophoretic NMR, variable temperature T relaxation, T relaxation and linewidth analysis, exchange spectroscopy, cross polarization, Rotational Echo Double Resonance, and isotope enrichment. In this review, each technique is introduced with a short description of the pulse sequence, and examples of experiments that have been performed in real solid-state polymer and/or hybrid electrolyte systems are provided. The results and conclusions of these experiments are discussed to inform readers of the strengths and weaknesses of each technique when applied to polymer and hybrid electrolyte systems. It is anticipated that this review may be used to aid in the selection of solid-state NMR experiments for the analysis of these systems.

摘要

固态核磁共振光谱法是一种成熟的实验技术,用于表征材料在其天然状态下的结构和动态特性。许多类型的固态核磁共振实验已被用于表征锂基和钠基固体聚合物以及聚合物 - 陶瓷混合电解质材料。本综述描述了几种常用于分析这些体系的固态核磁共振实验:脉冲场梯度核磁共振、电泳核磁共振、变温T弛豫、T弛豫和线宽分析、交换光谱、交叉极化、旋转回波双共振以及同位素富集。在本综述中,每种技术都通过对脉冲序列的简短描述进行介绍,并提供在实际固态聚合物和/或混合电解质体系中进行的实验示例。讨论了这些实验的结果和结论,以使读者了解每种技术应用于聚合物和混合电解质体系时的优缺点。预计本综述可用于帮助选择用于分析这些体系的固态核磁共振实验。

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