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首页> 外文期刊>Macromolecules >Ring-opening polymerization of cyclic monomers by complexes derived from biocompatible metals. Production of poly(lactide), poly(trimethylene carbonate), and their copolymers
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Ring-opening polymerization of cyclic monomers by complexes derived from biocompatible metals. Production of poly(lactide), poly(trimethylene carbonate), and their copolymers

机译:衍生自生物相容性金属的络合物使环状单体开环聚合。聚丙交酯,聚碳酸三亚甲基酯及其共聚物的生产

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摘要

Tridentate Schiff base calcium derivatives have been prepared and shown to be very effective catalysts for ring-opening polymerization of both lactides and trimethylene carbonate to produce high molecular weight polymers with narrow polydispersity. Optimization of the calcium catalyst was achieved changing the imine backbone, initiator, and substituent on the phenolate ring of the calcium complex. Turnover frequencies were obtained up to 1124 h(-1) for a melt polymerization of L-lactide carried out at 110 degrees C. Solution studies in CDCl3 demonstrated the polymerization reaction is first order in [monomer] and [catalyst], with k = 19.9 M-1 h(-1) for lactide polymerization and k = 500.0 M-1 h(-1) for trimethylene carbonate polymerization at ambient temperature. The activation parameters for the ring-opening polymerization Of L-lactide using catalyst la were determined to be Delta H double dagger = 73.5 +/- 3.8 kJ/mol and Delta S double dagger = -42.5 +/- 12.6 J/(mol K), and catalyst la was shown to produce heterotactic polylactide from rac-lactide with a Pr value of 0.73. It was also found that the ring-opening polymerization of trimethylene carbonate is a lower energy process than that of lactide polymerization as revealed by its activation parameters, which were determined to be Delta H double dagger = 37.9 +/- 3.1 kJ/mol and Delta S double dagger = -135.1 +/- 11.4 J/(mol K). Furthermore, this class of catalysts afforded from biocompatible metals is very effective at producing diblock copolymer from trimethylene carbonate and lactides. Kinetic studies of the copolymerization of trimethylene carbonate and L-lactide are presented as a function of the feed ratio of the two cyclic monomers.
机译:已经制备了三齿席夫碱钙衍生物,并显示出它们是丙交酯和碳酸三亚甲基酯的开环聚合以生产具有窄多分散性的高分子量聚合物的非常有效的催化剂。通过改变钙络合物的酚盐环上的亚胺主链,引发剂和取代基,实现了钙催化剂的优化。在110摄氏度下进行L-丙交酯的熔融聚合时,获得了高达1124 h(-1)的周转频率。在CDCl3中的溶液研究表明,在[单体]和[催化剂]中,聚合反应是一级反应,k =丙交酯聚合反应在室温下为19.9 M-1 h(-1),碳酸三亚甲基酯聚合反应在k = 500.0 M-1 h(-1)。确定使用催化剂1a的L-丙交酯的开环聚合的活化参数为ΔH双匕首= 73.5 +/- 3.8kJ / mol和ΔS双匕首= -42.5 +/- 12.6J /(mol K ),并且显示催化剂1a从外消旋丙交酯产生杂规聚丙交酯,Pr值为0.73。还发现碳酸三亚甲基酯的开环聚合反应比丙交酯聚合反应的能量过程低,这是由其活化参数所揭示的,活化参数被确定为Delta H double dagger = 37.9 +/- 3.1 kJ / mol和Delta S双匕首= -135.1 +/- 11.4 J /(mol K)。此外,由生物相容性金属提供的这类催化剂在由碳酸三亚甲基酯和丙交酯制备二嵌段共聚物方面非常有效。给出了碳酸三亚甲基酯和L-丙交酯共聚的动力学研究,它是两种环状单体进料比的函数。

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