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通过固态核磁共振确定层状含水硅酸盐中强氢键合硅醇的几何结构。

Determining the geometry of strongly hydrogen-bonded silanols in a layered hydrous silicate by solid-state nuclear magnetic resonance.

作者信息

Gardiennet Carole, Marica Florea, Fyfe Colin A, Tekely Piotr

机构信息

UMR CNRS 7565, Université Henri Poincaré, Nancy I, 54506 Vandoeuvre-lès-Nancy, France.

出版信息

J Chem Phys. 2005 Feb 1;122(5):54705. doi: 10.1063/1.1839551.

DOI:10.1063/1.1839551
PMID:15740344
Abstract

High-resolution solid-state NMR spectroscopy is exploited to obtain structural constraints involving strongly hydrogen-bonded silanols in octosilicate, a prominent member of the layered hydrous sodium silicates. Proton-silicon cross-polarization dynamics reveals that octosilicate contains two types of Q(3) silicons present in hydrogen-bonded -Si-O-Hcdots, three dots, centeredO-Si- and -Si-O(-)-type sites which can only be distinguished by their different abilities to cross polarize and the different mobilities of neighboring hydrous species. The theoretical analysis of the oscillating components of the polarization transfer buildup curves suggests that the model of heteronuclear pairs is an adequate description of the quantum spin system within hydrogen-bonded -Si-O-Hcdots, three dots, centeredO-Si- fragments. We also show that dipolar modulated, slow speed magic-angle (29)Si NMR spectrum provides unique geometric information on strongly hydrogen-bonded silanols. The dipolar modulated spinning sidebands contain all the information necessary to determine the internuclear Sicdots, three dots, centeredH distances as well as the magnitude and orientation of the principal elements of the (29)Si chemical shielding tensor in the molecular frame. The data provide definite proof of the intralayer character of strongly hydrogen-bonded silanol groups in a bridging, albeit not symmetric, position between neighboring tetrahedra. The approach developed in this work may be useful to obtain structural information on related layered alkali metal silicates, silica gels as well as on other classes of microporous materials.

摘要

高分辨率固态核磁共振光谱被用于获取八硅酸盐(层状含水硅酸钠的一个重要成员)中涉及强氢键合硅醇的结构约束。质子 - 硅交叉极化动力学表明,八硅酸盐包含两种类型的Q(3)硅,存在于氢键合的 -Si-O-H···O-Si- 和 -Si-O(-)- 型位点中,这些位点只能通过它们不同的交叉极化能力以及相邻含水物种的不同迁移率来区分。对极化转移积累曲线振荡成分的理论分析表明,异核对模型足以描述氢键合的 -Si-O-H···O-Si- 片段内的量子自旋系统。我们还表明,偶极调制的低速魔角 (29)Si NMR 光谱提供了关于强氢键合硅醇的独特几何信息。偶极调制的旋转边带包含确定分子框架中核间Si···H距离以及 (29)Si 化学屏蔽张量主元素的大小和方向所需的所有信息。这些数据为相邻四面体之间桥连(尽管不对称)位置上强氢键合硅醇基团的层内特性提供了确凿证据。这项工作中开发的方法可能有助于获取有关相关层状碱金属硅酸盐、硅胶以及其他类微孔材料的结构信息。

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