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用于金属有机框架结构和动力学研究的超高分辨率固态核磁共振光谱学。

Solid-state NMR spectroscopy at ultrahigh resolution for structural and dynamical studies of MOFs.

作者信息

Wang Qing, Peng Min, Liang Cong-Cong, Tan Jing, Zhang Sophia, Zhang Yue-Biao, Liu Haiming

机构信息

School of Physical Science and Technology, ShanghaiTech University, Shanghai, 201210, China.

Maling Middle School, Suqian, Jiangsu, 223800, China.

出版信息

Magn Reson Lett. 2023 Mar 20;3(2):175-186. doi: 10.1016/j.mrl.2023.02.002. eCollection 2023 May.

Abstract

To characterize the structure and dynamics of metal--organic frameworks (MOFs) in-depth at the molecular level, it is necessary to pursue high-resolution solid-state magic angle spinning (MAS) nuclear magnetic resonance (NMR) spectroscopy. Spectral resolution is usually affected by the quality of materials and various experimental conditions, of which magic angle (MA) accuracy is a crucial determinant. The current industrial criteria for MA calibration based on the common standard of KBr were found insufficient in guaranteeing optimal resolution MAS NMR for highly ordered MOFs. To drive towards higher-resolution MAS NMR spectroscopy, we propose a calibration protocol for more accurate MA with a higher-precision criterion based on Br MAS NMR of KBr, where the linewidth ratio of the fifth-order spinning sideband to the central band of KBr should be less than 1.00. As a result, ultrahigh-resolution C cross-polarization (CP) MAS NMR of MOF-5 is achieved with minimal linewidths as low as 4 Hz, and therefore MOF-5 can be used as a new standard convenient for verifying MA accuracy and also optimizing C CP conditions. Maintaining high-precision MA under variable temperature (VT) was found challenging on certain commercial MAS NMR probes, as was systematically investigated by VT NMR using KBr and MOF-5. Nevertheless, ultrahigh-resolution MAS NMR spectroscopy with stable MA under VT is employed to reveal fine structures and linker dynamics of a series of Zn-based MOFs with highly regulated structures. The ultrahigh-resolution NMR methodcan be generally applied to study a broad range of MOFs and other materials.

摘要

为了在分子水平上深入表征金属有机框架(MOF)的结构和动力学,有必要采用高分辨率固态魔角旋转(MAS)核磁共振(NMR)光谱技术。光谱分辨率通常受材料质量和各种实验条件的影响,其中魔角(MA)精度是一个关键决定因素。目前基于KBr通用标准的MA校准工业标准,在保证高度有序MOF的最佳分辨率MAS NMR方面被发现是不够的。为了实现更高分辨率的MAS NMR光谱,我们基于KBr的Br MAS NMR提出了一种校准方案,以更高精度的标准获得更精确的MA,其中KBr的五阶旋转边带与中心带的线宽比应小于1.00。结果,实现了MOF-5的超高分辨率碳交叉极化(CP)MAS NMR,其最小线宽低至4 Hz,因此MOF-5可作为一种新的标准,便于验证MA精度并优化碳CP条件。在某些商业MAS NMR探头上,发现在可变温度(VT)下维持高精度MA具有挑战性,使用KBr和MOF-5通过VT NMR对此进行了系统研究。尽管如此,利用在VT下具有稳定MA的超高分辨率MAS NMR光谱来揭示一系列结构高度规整的锌基金属有机框架的精细结构和连接体动力学。这种超高分辨率NMR方法通常可用于研究广泛的MOF和其他材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a01/12406566/55b77597d8d7/ga1.jpg

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