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Zinc complexes coordinated by bipyridine-phenolate ligands as an efficient initiator for ring-opening polymerization of cyclic esters
Journal article   Peer reviewed

Zinc complexes coordinated by bipyridine-phenolate ligands as an efficient initiator for ring-opening polymerization of cyclic esters

Yi-Liang Hsieh, Yi-Chien Lin, Gene-Hsiang Lee and Chi-How Peng
Polymer (United Kingdom), Vol.56, pp.237-244
15/01/2015

Abstract

Bipyridine-phenolate Ring-opening polymerization Zinc complexes
A series of zinc complexes coordinated by different bipyridine-phenolate (BpyPh) ligands, 2-([2,2′-bipyridin]-6-yl)-4,6-di-tert-butylphenol (BpyPh <sup>2,4-tBu</sup> -H, 3) and 2-([2,2′-bipyridin]-6-yl)-4-(tert-butyl) phenol (BpyPh <sup>4-tBu</sup> -H, 4) have been synthesized. The reaction of BpyPh <sup>2,4-tBu</sup> -H with ZnEt <sub>2</sub> gave a six-coordinated complex of [(BpyPh <sup>2,4-tBu</sup> ) <sub>2</sub> Zn] (5) with the distorted octahedral geometry. However, the dinuclear complexes of [(BpyPh)Zn(μ-OBn)] <sub>2</sub> (6 and 7) were formed when benzyl alcohol was added and then can be converted to mononuclear zinc benzylalkoxide species by the increased temperature. The ε-CL and L-LA polymerizations initiated by complex 6 showed the living characteristics of narrow molecular weight distribution (PDIs < 1.15) and the capability of block copolymer synthesis demonstrated by the formation of PCL-b-PVL and PCL-b-PHB. The ring-opening polymerizations of cyclic esters initiated by complex 5, however, was not effective possibly due to the highly steric hindered metal center.

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