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通过后合成金属交换实现金属有机框架材料DUT-49的可调柔韧性与孔隙率

Tunable Flexibility and Porosity of the Metal-Organic Framework DUT-49 through Postsynthetic Metal Exchange.

作者信息

Garai Bikash, Bon Volodymyr, Krause Simon, Schwotzer Friedrich, Gerlach Martin, Senkovska Irena, Kaskel Stefan

机构信息

Anorganische Chemie I, Technische Universität Dresden, Bergstraße-66, 01069 Dresden, Germany.

Macromolecular Crystallography Group, Helmholtz-Zentrum Berlin für Materialien und Energie, Albert-Einstein-Straße 15, 12489 Berlin, Germany.

出版信息

Chem Mater. 2020 Jan 28;32(2):889-896. doi: 10.1021/acs.chemmater.9b04769. Epub 2020 Jan 6.

Abstract

As a prominent and representative example of flexible metal-organic frameworks (MOFs), DUT-49(Cu) has gained attention due to the unique phenomenon of negative gas adsorption (NGA), originating from an unprecedented structural contraction during the gas adsorption. Herein, postsynthetic metal exchange is demonstrated to afford DUT-49 frameworks with a wide variety of metal cations, e.g., Mn, Fe, Ni, Zn, Cu, and Cd. The single-crystal-to-single-crystal conversion allowed characterization of the new MOFs by single crystal X-ray diffraction, indicating identical structure and topology compared with that of previously explored DUT-49(Cu) framework. This approach is proven successful in achieving Mn-Mn and Cd-Cd dimers, which are rare examples of M-M paddle-wheel SBUs. The relative stability and flexibility of the resulted frameworks are observed to be highly sensitive to the metal ion of the framework, following the trends predicted by the Irving-Williams series. DUT-49(Ni) was recognized as a second material from the DUT-49 series showing adsorption-induced transitions. A sequential increase in framework flexibility from rigid to flexible and from flexible to NGA has been achieved through selective incorporation of metal centers into the structure. Finally, heterometallic structures are formed by selective and controlled exchange of metal ions to finely tune the flexibility and NGA phenomenon of the framework.

摘要

作为柔性金属有机框架(MOF)的一个突出且具有代表性的例子,DUT-49(Cu)因其独特的负气体吸附(NGA)现象而受到关注,这种现象源于气体吸附过程中前所未有的结构收缩。在此,后合成金属交换被证明可提供具有多种金属阳离子(如Mn、Fe、Ni、Zn、Cu和Cd)的DUT-49框架。单晶到单晶的转变使得通过单晶X射线衍射对新的MOF进行表征,表明其结构和拓扑与先前探索的DUT-49(Cu)框架相同。这种方法被证明在实现Mn-Mn和Cd-Cd二聚体方面是成功的,这是M-M桨轮次级构筑单元(SBU)的罕见例子。观察到所得框架的相对稳定性和柔性对框架的金属离子高度敏感,遵循欧文-威廉姆斯序列预测的趋势。DUT-49(Ni)被认为是DUT-49系列中第二种表现出吸附诱导转变的材料。通过将金属中心选择性地引入结构中,实现了框架柔性从刚性到柔性以及从柔性到NGA的逐步增加。最后,通过金属离子的选择性和可控交换形成异金属结构,以精细调节框架的柔性和NGA现象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfb7/9115755/99b90fdbed85/cm9b04769_0001.jpg

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