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通过多核固态MAS NMR阐明插层有水和甲醇的结晶α-磷酸锆的结构与动力学:一种综合NMR方法。

Elucidating structure and dynamics of crystalline α-zirconium phosphates intercalated with water and methanol by multinuclear solid-state MAS NMR: A comprehensive NMR approach.

作者信息

Bakhmutov Vladimir I, Contreras-Ramirez Aida, Drake Hannah, Zhou Hong-Cai

机构信息

Department of Chemistry, Texas A&M University, College Station, TX, USA.

Department of Materials Science and Engineering, Texas A&M University, College Station, TX, USA.

出版信息

Magn Reson Chem. 2022 Jun;60(6):541-553. doi: 10.1002/mrc.5262. Epub 2022 Mar 7.

Abstract

Solid-state NMR experiments on H, P, C, and H nuclei, including P T , H T , and H T measurements, as well as on the kinetics of proton-phosphorus cross-polarization have been performed to characterize the crystalline and amorphous α-zirconium phosphates, which were intercalated with D O and/or CD OD. The C{ H} CP MAS NMR experiment performed for compound 1-CD OD (Zr (HPO ) 0.2CD OD) with carbon cross-polarization via protons of phosphate groups has provided a prove that the methanol was intercalated into the interlayer spaces of this compound. The variable-temperature H solid-echo MAS NMR spectra of intercalated compounds demonstrated that the methanol molecules, in contrast to the mobile water, were immobile, keeping, however, free CD rotations around the C -axis. It has been demonstrated that the intercalated species, D O and CD OD, do not affect the high-frequency motions of the phosphate groups. By utilizing local structural models that satisfy the constraints of the experimental data, it has been suggested that the immobile methanol molecules are located in the cavity between two neighboring layers of the zirconium phosphates. Thus, the present work illustrates the reliable criteria in a comprehensive NMR approach to structural and dynamic studies of such systems.

摘要

已对氢、磷、碳和氘核进行了固态核磁共振实验,包括磷的双量子、氢的双量子和氢的三量子测量,以及质子 - 磷交叉极化动力学实验,以表征插入重水和/或氘代甲醇的结晶态和非晶态α - 磷酸锆。对化合物1 - 氘代甲醇(Zr(HPO₄)₂·0.2CD₃OD)通过磷酸根基团的质子进行碳交叉极化的¹³C{¹H} CP MAS NMR实验,证明甲醇插入了该化合物的层间空间。插入化合物的变温¹H固体回波MAS NMR谱表明,与流动的水不同,甲醇分子是不移动的,不过保持围绕C₂轴的自由CD旋转。已证明插入的物种,重水和氘代甲醇,不影响磷酸根基团的高频运动。通过利用满足实验数据约束的局部结构模型,有人提出不移动的甲醇分子位于磷酸锆两层相邻层之间的空腔中。因此,本工作说明了在全面的核磁共振方法中对这类系统进行结构和动力学研究的可靠标准。

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