Li Jian, Lin Cong, Ma Tianqiong, Sun Junliang
College of Chemistry and Molecular Engineering, Beijing National Laboratory for Molecular Sciences, Peking University, 100871, Beijing, China.
Berzelii Center EXSELENT on Porous Materials, Department of Materials and Environmental Chemistry, Stockholm University, 10691, Stockholm, Sweden.
Nat Commun. 2022 Jul 11;13(1):4016. doi: 10.1038/s41467-022-31524-9.
The pursuit of atomic precision structure of porous covalent organic frameworks (COFs) is the key to understanding the relationship between structures and properties, and further developing new materials with superior performance. Yet, a challenge of how to determine their atomic structures has always existed since the first COFs reported seventeen years ago. Here, we present a universal method for ab initio structure determination of polycrystalline three-dimensional (3D) COFs at atomic level using enhanced cryo-continuous rotation electron diffraction (cryo-cRED), which combines hierarchical cluster analysis with cryo-EM technique. The high-quality datasets possess not only up to 0.79-angstrom resolution but more than 90% completeness, leading to unambiguous solution and precise refinement with anisotropic temperature factors. With such a powerful method, the dynamic structures with flexible linkers, degree of interpenetration, position of functional groups, and arrangement of ordered guest molecules are successfully revealed with atomic precision in five 3D COFs, which are almost impossible to be obtained without atomic resolution structure solution. This study demonstrates a practicable strategy for determining the structures of polycrystalline COFs and other beam-sensitive materials and to help in the future discovery of novel materials on the other.
追求多孔共价有机框架(COF)的原子精确结构是理解结构与性能之间关系以及进一步开发具有卓越性能的新材料的关键。然而,自十七年前首次报道COF以来,如何确定其原子结构一直是一个挑战。在此,我们提出了一种通用方法,使用增强型低温连续旋转电子衍射(cryo-cRED)在原子水平上从头确定多晶三维(3D)COF的结构,该方法将层次聚类分析与低温电子显微镜技术相结合。高质量数据集不仅具有高达0.79埃的分辨率,而且完整性超过90%,从而能够明确求解并使用各向异性温度因子进行精确精修。借助这种强大的方法,在五个3D COF中成功以原子精度揭示了具有柔性连接体的动态结构、互穿程度、官能团位置和有序客体分子的排列,而没有原子分辨率结构解析几乎不可能获得这些信息。这项研究展示了一种确定多晶COF和其他对电子束敏感材料结构的可行策略,另一方面有助于未来新型材料的发现。