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后合成镍簇在金属有机框架中的晶体学可视化

Crystallographic Visualization of Postsynthetic Nickel Clusters into Metal-Organic Framework.

作者信息

Wang Xiao-Ning, Zhang Peng, Kirchon Angelo, Li Jia-Luo, Chen Wen-Miao, Zhao Yu-Meng, Li Bao, Zhou Hong-Cai

机构信息

Key Laboratory of Material Chemistry for Energy Conversion and Storage, School of Chemistry and Chemical Engineering , Huazhong University of Science and Technology Hubei Key Laboratory of Bioinorganic Chemistry & Materia Medica , Wuhan , Hubei 430074 , People's Republic of China.

Department of Chemistry , Texas A&M University , College Station , Texas 77843-3255 , United States.

出版信息

J Am Chem Soc. 2019 Aug 28;141(34):13654-13663. doi: 10.1021/jacs.9b06711. Epub 2019 Aug 19.

Abstract

Postsynthetic metalation (PSM) has been employed as a robust method for the postsynthetic modification of metal-organic frameworks (MOFs). However, the lack of relevant information that can be obtained for the postsynthetically introduced metallic ions has hindered the development of PSM applications. Thanks to the advancement in single-crystal X-ray diffraction (SCXRD) technology, there have been a few recent examples in which successful postsynthetic introduction of single metal ions into MOFs occurred at the defined chelating sites. These works have provided useful explanations about the complicated host-guest chemistry involved in PSMs. On the other hand, there are only limited examples with crystallographic snapshots of the postsynthetic installation of metal clusters into the pores of MOFs using an ordinary SCXRD due to the loss of crystallinity of parent matrix during the PSM process. Herein, by the careful selection of starting materials and controlling the reaction conditions, we report the first crystallographic visualization of metal clusters inserted into Zr-based MOFs via PSM. The structural advantages of the parent Zr-MOF, which are inherited from the stable Zr cluster and triazole-containing dicarboxylate ligand, ensure both the preservation of high crystallinity and the presence of flexible coordination sites for PSM. Furthermore, PSM of metal clusters in a MOF pore space enhances stability of the final samples while also imparting the functionality of a successful catalyst toward ethylene dimerization reaction. The related construction ideas and structural information detailed in this work can help lay the foundation for further advancements using the postmodification of MOFs as well as open new doors for the utilization of SCXRD technology in the field of MOFs.

摘要

合成后金属化(PSM)已被用作金属有机框架(MOF)合成后修饰的一种可靠方法。然而,对于合成后引入的金属离子缺乏可获取的相关信息,这阻碍了PSM应用的发展。得益于单晶X射线衍射(SCXRD)技术的进步,最近有一些成功地将单个金属离子在定义的螯合位点合成后引入MOF的例子。这些工作为PSM中涉及的复杂主客体化学提供了有用的解释。另一方面,由于在PSM过程中母体基质的结晶度丧失,使用普通SCXRD对金属簇合成后安装到MOF孔中的晶体学快照的例子有限。在此,通过精心选择起始材料并控制反应条件,我们报道了通过PSM将金属簇插入基于Zr的MOF中的首次晶体学可视化。母体Zr-MOF的结构优势源于稳定的Zr簇和含三唑的二羧酸配体,既确保了高结晶度的保留,又为PSM提供了灵活的配位位点。此外,在MOF孔空间中进行金属簇的PSM提高了最终样品的稳定性,同时还赋予了成功催化乙烯二聚反应的功能。这项工作中详细阐述的相关构建思路和结构信息有助于为利用MOF的后修饰进一步发展奠定基础,并为在MOF领域利用SCXRD技术打开新的大门。

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