Up–down approach for expanding the chemical space of metal–organic frameworks

0 CHEMISTRY, MULTIDISCIPLINARY Nature synthesis Pub Date : 2024-09-05 DOI:10.1038/s44160-024-00638-x
Jiyeon Kim, Dongsik Nam, Hye Jin Cho, Eunchan Cho, Dharmalingam Sivanesan, Changhyeon Cho, Jaewoong Lee, Jihan Kim, Wonyoung Choe
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Abstract

The vast structural diversity of metal–organic frameworks (MOFs) and the ability to tailor the structures makes the materials applicable for a broad range of uses. Traditional bottom-up and top-down design approaches have enabled a rapid increase in this structural diversity, yet the systematic screening for unknown synthesizable MOFs remains a challenge. Here we report a design strategy, the up–down approach, by merging the bottom-up and top-down approaches. This approach bridges the advantages of both methods, creating a synergistic strategy for discovering MOF structures. Targeting Zr-based MOFs, we search promising topology candidates and unveiled 26 future structural configurations by considering the possible orientations of Zr6 clusters. Through ribbon representation and sophisticated analysis of the ligand angles, we suggest structure models and synthesize Zr6-based MOFs with bct (1) and scu (1) configurations. The up–down approach will accelerate the discovery of previously unknown or inaccessible MOFs, providing exciting opportunities to expand the chemical space of MOFs. An up–down approach for discovering metal–organic frameworks (MOFs) identifies 26 unknown Zr-based MOF configurations and provides a valuable guide for synthetic chemists to expand the chemical space of MOFs.

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拓展金属有机框架化学空间的 "上-下 "方法
金属有机框架(MOFs)结构的多样性和对结构进行定制的能力使这种材料具有广泛的用途。传统的 "自下而上 "和 "自上而下 "的设计方法使这种结构多样性迅速增加,然而系统地筛选未知的可合成 MOFs 仍然是一项挑战。在此,我们报告了一种融合自下而上和自上而下方法的设计策略--自上而下方法。这种方法兼具两种方法的优点,是发现 MOF 结构的协同策略。我们以 Zr 基 MOF 为目标,通过考虑 Zr6 簇可能的取向,搜索了有前景的拓扑候选结构,并揭示了 26 种未来的结构构型。通过带状表示和配体角度的精密分析,我们提出了结构模型,并合成了具有 bct (1) 和 scu (1) 构型的 Zr6 基 MOF。这种 "上-下 "方法将加速发现以前未知或无法获得的 MOF,为拓展 MOF 的化学空间提供令人兴奋的机会。
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