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Metallo-supramolecular polymerization: A route to easy-to-process organic/inorganic hybrid materials

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SPRINGER
DOI: 10.1007/s10904-006-9075-2

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conjugated polymer; metallopolymer; organic/inorganic hybrid material; organometallic; polymer; poly(p-phenylene ethynylene); poly(p-xylylene); PPE; PPX; processing; supramolecular polymerization; transition metal

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The self-assembly polymerization of ditopic macromolecules via metal-ligand binding is a facile route for the preparation of metallo-supramolecular polymers (MSPs). We herein review our recent work focused on the synthesis and investigation of metallo-supramolecular polymers based on 2,6-bis(1'-methylbenzimidazolyl)pyridine endcapped poly(p-phenylene ethynylene) and poly(p-xylene) macromonomers. These materials are readily solution-processable and display appreciable mechanical properties as well as other attractive properties such as specific opto/electrical functions or high thermal stability. Our work illustrates that metallosupramolecular polymerization offers an attractive approach to assemble high-molecular-weight macromolecules from well-defined, easy to process precursors. Variation of the ditopic ligands and metal ions allows one to easily tailor the desired properties.

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