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Extra info for Comprehensive Coordination Chemistry II, Volume 1: Fundamentals: Ligands, Complexes, Synthesis, Purification, and Structure

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S. ; Deshayes, K. ; Kinstle, T.

12 REFERENCES 1. Meyer, T. J. Pure Appl. Chem. 1986, 58, 1193–1206. 2. ; von Zelewsky, A. Coord. Chem. Rev. 1988, 84, 85–277. 3. , Eds. Photochemistry and Photophysics of Coordination Compounds; Springer-Verlag: Berlin, 1987. 4. Constable, E. C. Adv. Inorg. Chem. 1989, 34, 1–63. 5. Meyer, T. Acc. Chem. Res. 1989, 22, 165–170. 6. Lindoy, L. ; Livingstone, S. E. Coord. Chem. Rev. 1967, 2, 173–193. 7. ; Juris, A. Coord. Chem. Rev. 2001, 211, 97–115. 8. Hui, J. W. ; Wong, W. T. Coord. Chem. Rev. 1998, 172, 389–436.

256 The 4,40 -bipyridine ligand has been utilized in the synthesis of linear coordination polymers as well as grids and networks through reaction with transition metal ions. 263 Ruthenium complexes of the form [RuL3]2þ and [RuL(bpy)2]2þ (L ¼ 4,40 (4-anilinovinyl)-bpy) undergo electrochemical polymerization to form a conducting and an insulating film, respectively. 3 Polymers with Bipyridine Side Chains Bipyridine may be incorporated into polymers as side chains. These macromolecules are typically generated by functionalizing a standard monomer with a bipyridine ligand prior to polymerization.

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Comprehensive Coordination Chemistry II, Volume 1: by Author Unknown
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