4.6 Article

An unprecedented anionic Ln-MOF with a cage-within-cage motif: spontaneous reduction and immobilization of ion-exchanged Pd(II) to Pd-NPs in the framework

Journal

JOURNAL OF MATERIALS CHEMISTRY A
Volume 3, Issue 48, Pages 24525-24531

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c5ta04937g

Keywords

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Funding

  1. National Basic Research Program of China (973 Program) [2012CB821702]
  2. National Natural Science Foundation of China [21233009, 21173221, 21571175]
  3. State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences

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An unprecedented microporous anionic Ln-MOF, [Me2NH2](24)[Tb-12(TATB)(16)(HCOO)(12)]center dot 12DMF center dot 48H(2)O (1) (H(3)TATB = 4,4',4 ''-s-triazine-2,4,6-tribenzoic acid), which is a rare cage-within-cage structure through interpenetration rather than covalent bonding, has been synthesized. Compound 1 contains a 3D net which is constructed using a large and a small Ln-carboxylate cage alternately arranged by sharing faces with each other. Interpenetration of two identical 3D nets occurs in such a way that each small cage of one net is encapsulated within the large cage of the other and vice versa, generating an overall 3D double-walled cage framework. Such interpenetration creates a unique structure of double-shelled hollow space to accommodate Pd nanoparticles (Pd-NPs), which could effectively prevent Pd-NPs from aggregation and leaching. Moreover, the ion-exchanged Pd(II) embedded in the framework can be readily reduced at room temperature with no requirement of any chemical or thermal treatments, affording Pd-NPs with uniform size and even distribution. As a result, the as-prepared Pd-NPs@1 exhibits excellent activity and cycling stability for the hydrogenation of styrene and its derivatives.

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