首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Zinc complexes supported by multidentate aminophenolate ligands: Synthesis, structure and catalysis in ring-opening polymerization of rac-lactide
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Zinc complexes supported by multidentate aminophenolate ligands: Synthesis, structure and catalysis in ring-opening polymerization of rac-lactide

机译:多齿氨基酚盐配体支持的锌配合物:外消旋丙交酯的开环聚合反应的合成,结构和催化作用

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摘要

Monomeric zinc silylamido and ethyl complexes bearing tetradentate aminophenolato ligands [(DNNO)ZnR] (D = NMe_2, OMe; R = N(SiMe _3)_2 (1-5, 8), Et (6, 7, 9, 10)), were isolated from the reaction of Zn[N(SiMe_3)_2]_2 or ZnEt_2 and one equivalent of aminophenols {aryl-CH_2N[(CH_2) _2NMe_2]CH_2-phenol} in moderate to high yields. The monomeric nature of these complexes was further confirmed by X-ray diffraction studies of silylamido complexes 1, 3 and ethyl complexes 7, 9, 10. The methoxy or N,N-dimethylamino group of the aryl unit does not coordinate with the metal center in the solid state, only the remaining three donors of the ligand and silylamido or ethyl group interact with zinc center constructing a distorted tetrahedral coordination geometry at the metal center. All these zinc complexes efficiently initiated the ring-opening polymerization of rac-lactide, and the polymerization runs were better controlled in the presence of isopropanol, giving atactic PLAs end-capped with isopropyl ester and hydroxyl groups. The structure of the ancillary ligands showed some influence on the catalytic activity and selectivity of the corresponding zinc complexes. The introduction of bulky ortho-substituents on the phenoxy unit resulted in a decrease of the polymerization rate, whereas the isotactic dyad selectivity in the ROP of rac-lactide was enhanced.
机译:带有四齿氨基苯酚配体[(DNNO)ZnR]的单体硅铝基硅烷基和乙基配合物(D = NMe_2,OMe; R = N(SiMe _3)_2(1-5,8),Et(6,7,9,10))从Zn [N(SiMe_3)_2] _2或ZnEt_2与一当量的氨基酚{芳基-CH_2N [(CH_2)_2NMe_2] CH_2-苯酚}的反应中分离出高收率。这些配合物的单体性质通过甲硅烷基酰胺配合物1、3和乙基配合物7、9、10的X射线衍射研究得到进一步证实。芳基单元的甲氧基或N,N-二甲基氨基与金属中心不配位在固态状态下,仅剩余的三个配体和甲硅烷基或乙基的供体与锌中心相互作用,从而在金属中心形成扭曲的四面体配位几何形状。所有这些锌络合物都能有效地引发外消旋丙交酯的开环聚合反应,并且在异丙醇的存在下可以更好地控制聚合反应的进行,从而得到无规立构的PLA端基被异丙基酯和羟基封端。辅助配体的结构对相应的锌配合物的催化活性和选择性显示出一些影响。在苯氧基单元上引入大体积的正取代基导致聚合速率降低,而外消旋丙交酯的ROP中的全同立构二元选择性提高。

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