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De Novo Structure Determination of Covalent Organic Frameworks by NMR Crystallography

作者:Zhipeng Wang, Simin Yu, Guan-Le Chen, Yajie Zhang, Shoushun Chen, Jing Niu, Lin Liang, Jie Feng, Muhammad Bashir Khan, Bryan E. G. Lucier, San‐Yuan Ding, Wei Wang · 发表于:Journal of the American Chemical Society · 年份:2025 · DOI:10.1021/jacs.5c10516 · 被引用次数:9 · 研究领域:Covalent Organic Framework Applications、Metal-Organic Frameworks: Synthesis and Applications、Luminescence and Fluorescent Materials

Further advancement in the research area of covalent organic frameworks (COFs) is in urgent need of structural information with high accuracy. The bottleneck in characterization is the lack of effective strategies to resolve the complex features (e.g., the stacking sequence) of hierarchical structures. Herein, we establish an NMR crystallographic protocol to systematically and precisely measure multinuclear distances through advanced dipolar recoupling techniques, such as rotational echo double resonance (REDOR), double quantum–single quantum (DQ–SQ), and rotational echo adiabatic passage double resonance (REAPDOR) experiments. For the first time, we obtained the atomic distances of 1 H– 1 H, 1 H– 19 F, and 13 C– 19 F within the monolayer, two adjacent layers, and three consecutive layers of a two-dimensional (2D) COF, TPPA-F 4 . Based on these key parameters with an accuracy of 0.10 Å, the structural features of TPPA-F 4 COF, including the covalent connection, intralayer conformation, interlayer distance, the direction and distances of the layer offsets, and stacking mode, have been de novo determined in detail. Moreover, the generality of this NMR crystallographic approach was verified by solving the crystal structure of a selective deuterium-labeled TPPA- d 4 COF via 1 H– 2 H distance measurements. We expect that the NMR crystallographic protocol paves new ways not only for the structural determination of complex 3D COFs but also for the investigation of the crystallizatio...