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室温下稳定介孔金属有机框架的动态键导向合成

Dynamic Bond-Directed Synthesis of Stable Mesoporous Metal-Organic Frameworks under Room Temperature.

作者信息

Li Youcong, Su Jian, Zhao Yue, Feng Liang, Gao Lei, Xu Xinyu, Yin Ya, Liu Yifan, Xiao Pengwei, Yuan Ling, Qin Jun-Sheng, Wang Yuanyuan, Yuan Shuai, Zheng He, Zuo Jing-Lin

机构信息

State Key Laboratory of Coordination Chemistry, Nanjing University, Nanjing, Jiangsu 210023, China.

School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Nanjing, Jiangsu 210094, China.

出版信息

J Am Chem Soc. 2023 May 10;145(18):10227-10235. doi: 10.1021/jacs.3c01219. Epub 2023 Apr 19.

Abstract

Stable metal-organic frameworks (MOFs) with mesopores (2-50 nm) are promising platforms for immobilizing nanosized functional compounds, such as metal-oxo clusters, metal-sulfide quantum dots, and coordination complexes. However, these species easily decompose under acidic conditions or high temperatures, hindering their encapsulation in stable MOFs, which are usually synthesized under harsh conditions involving excess acid modulators and high temperatures. Herein, we report a route for the room-temperature and acid-modulator-free synthesis of stable mesoporous MOFs and MOF catalysts with acid-sensitive species encapsulated: (1) we initially construct a MOF template by connecting stable Zr clusters with labile Cu-bipyridyl moieties; (2) Cu-bipyridyl moieties are subsequently exchanged by organic linkers to afford a stable version of Zr-MOFs; (3) acid-sensitive species, including polyoxometalates (POMs), CdSeS/ZnS quantum dots, and Cu-coordination cages, can be encapsulated into the MOFs during step 1. The room-temperature synthesis allows the isolation of mesoporous MOFs with 8-connected Zr clusters and topology as kinetic products, which are inaccessible by traditional solvothermal synthesis. Furthermore, acid-sensitive species remain stable, active, and locked within the frameworks during MOF synthesis. We observed high catalytic activity for VX degradation by the POM@Zr-MOF catalysts as a result of the synergy between redox-active POMs and Lewis-acidic Zr sites. The dynamic bond-directed method will accelerate the discovery of large-pore stable MOFs and offer a mild route to avoid the decomposition of catalysts during MOF synthesis.

摘要

具有介孔(2 - 50纳米)的稳定金属有机框架(MOF)是用于固定纳米级功能化合物的有前景的平台,这些化合物如金属氧簇、金属硫化物量子点和配位络合物。然而,这些物质在酸性条件或高温下容易分解,这阻碍了它们被封装在稳定的MOF中,而稳定的MOF通常是在涉及过量酸调节剂和高温的苛刻条件下合成的。在此,我们报告了一种在无酸调节剂的室温下合成稳定介孔MOF和封装有酸敏物种的MOF催化剂的方法:(1)我们首先通过将稳定的Zr簇与不稳定的铜 - 联吡啶部分连接来构建一个MOF模板;(2)随后铜 - 联吡啶部分被有机连接体交换,以得到稳定版本的Zr - MOF;(3)在步骤1中,可以将包括多金属氧酸盐(POM)、CdSeS/ZnS量子点和铜配位笼在内的酸敏物种封装到MOF中。室温合成使得能够分离出具有8连接Zr簇和特定拓扑结构的介孔MOF作为动力学产物,而这是传统溶剂热合成无法获得的。此外,在MOF合成过程中,酸敏物种保持稳定、活跃并被锁定在框架内。由于氧化还原活性的POM与路易斯酸性Zr位点之间的协同作用,我们观察到POM@Zr - MOF催化剂对VX降解具有高催化活性。这种动态键导向方法将加速大孔稳定MOF的发现,并提供一条温和的途径以避免在MOF合成过程中催化剂分解。

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