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基于锆的金属有机框架中侧链迁移率的固态碳核磁共振光谱测定

Solid-state C-NMR spectroscopic determination of side-chain mobilities in zirconium-based metal-organic frameworks.

作者信息

Hempel Günter, Kurz Ricardo, Paasch Silvia, Saalwächter Kay, Brunner Eike

机构信息

Martin-Luther-Universität Halle-Wittenberg, Institut für Physik - NMR, Betty-Heimann-Str. 7, 06120 Halle, Germany.

Technische Universität Dresden, Fakultät für Chemie und Lebensmittelchemie, Bioanalytische Chemie, 01062 Dresden, Germany.

出版信息

Magn Reson (Gott). 2024 Jan 5;5(1):1-20. doi: 10.5194/mr-5-1-2024. eCollection 2024.

Abstract

Porous interpenetrated zirconium-organic frameworks (PIZOFs) are a class of Zr-based metal-organic frameworks (MOFs) which are composed of long, rod-like dicarboxylate linkers and nodes. Long oligoethylene glycol or aliphatic side chains are covalently attached to the linker molecules in the cases of PIZOF-10 and PIZOF-11, respectively. These side chains are supposedly highly mobile, thus mimicking a solvent environment. It is anticipated that such MOFs could be used as a solid catalyst - the MOF - with pore systems showing properties similar to a liquid reaction medium. To quantify the side-chain mobility, here we have applied different 1D and 2D NMR solid-state spectroscopic techniques like cross-polarization (CP) and dipolar-coupling chemical-shift correlation (DIPSHIFT) studies. The rather high - CP efficiency observed for the groups of the side chains indicates that the long side chains are unexpectedly immobile or at least that their motions are strongly anisotropic. More detailed information about the mobility of the side chains was then obtained from DIPSHIFT experiments. Analytical expressions for elaborate data analysis are derived. These expressions are used to correlate order parameters and to slow motional rates with signals in indirect spectral dimensions, thus enabling the quantification of order parameters for the groups. The ends of the chains are rather mobile, whereas the carbon atoms close to the linker are more spatially restricted in mobility.

摘要

多孔互穿锆基有机框架材料(PIZOFs)是一类基于锆的金属有机框架材料(MOFs),由长的棒状二羧酸连接体和节点组成。在PIZOF - 10和PIZOF - 11的情况下,长的低聚乙二醇或脂肪族侧链分别共价连接到连接体分子上。据推测,这些侧链具有高度的流动性,从而模拟了溶剂环境。预计这种MOFs可以用作固体催化剂——具有与液体反应介质相似性质的孔系统的MOF。为了量化侧链的流动性,我们在此应用了不同的一维和二维核磁共振固态光谱技术,如交叉极化(CP)和偶极耦合化学位移相关(DIPSHIFT)研究。在侧链的基团上观察到相当高的CP效率,这表明长侧链出人意料地不具有流动性,或者至少它们的运动具有很强的各向异性。然后从DIPSHIFT实验中获得了关于侧链流动性的更详细信息。推导了用于详细数据分析的解析表达式。这些表达式用于将序参量和慢运动速率与间接光谱维度中的信号相关联,从而能够量化基团的序参量。链的末端相当具有流动性,而靠近连接体的碳原子在空间上的流动性受到更多限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35e9/12082566/946ec21e94b4/mr-5-1-2024-f01.jpg

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