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      Single Crystal-to-Single Crystal Site-Selective Postsynthetic Metal Exchange in a Zn-MOF Based on Semi-Rigid Tricarboxylic Acid and Access to Bimetallic MOFs

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          Functional Porous Coordination Polymers

          The chemistry of the coordination polymers has in recent years advanced extensively, affording various architectures, which are constructed from a variety of molecular building blocks with different interactions between them. The next challenge is the chemical and physical functionalization of these architectures, through the porous properties of the frameworks. This review concentrates on three aspects of coordination polymers: 1). the use of crystal engineering to construct porous frameworks from connectors and linkers ("nanospace engineering"), 2). characterizing and cataloging the porous properties by functions for storage, exchange, separation, etc., and 3). the next generation of porous functions based on dynamic crystal transformations caused by guest molecules or physical stimuli. Our aim is to present the state of the art chemistry and physics of and in the micropores of porous coordination polymers.
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            Metal-organic framework materials as chemical sensors.

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              Postsynthetic methods for the functionalization of metal-organic frameworks.

              Seth Cohen (2012)
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                Author and article information

                Journal
                Chemistry - A European Journal
                Chem. Eur. J.
                Wiley
                09476539
                February 09 2015
                February 09 2015
                December 22 2014
                : 21
                : 7
                : 2759-2765
                Article
                10.1002/chem.201406098
                4fc93e1d-a880-4c6c-9960-7d187473d0b2
                © 2014

                http://doi.wiley.com/10.1002/tdm_license_1.1

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