首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Tailoring of block copolymers based on the stoichiometric control of the end-functionality of telechelic oligomers and the utilization of large-scale fractionation by phase fluctuation chromatography: A synthetic strategy for the preparation of end-f
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Tailoring of block copolymers based on the stoichiometric control of the end-functionality of telechelic oligomers and the utilization of large-scale fractionation by phase fluctuation chromatography: A synthetic strategy for the preparation of end-f

机译:基于远螯螯合低聚物末端官能度的化学计量控制和相变色谱法大规模分馏的嵌段共聚物定制:合成末端氟的合成策略

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摘要

An AB diblock copolymer of poly(L-lactide) (PLLA) and poly(oxyethylene) (PEG) with a cinnamate terminal in the PEG block was prepared by the copolymerization of L-lactide and partially end-modified PEG followed by fractionation. The first step was the terminal modification of PEG with cinnamoyl chloride (CC), in which the degree of cinnamoylation of the hydroxyl terminals of PEG was roughly controlled by the feed ratio of both reactants, The resultant PEG cinnamate was subjected to copolymerization with L-lactide to produce a mixture of unreacted PEG dicinnamate (C-PEG-C), the diblock copolymer (PLLA-PEG-C), and the triblock copolymer (PLLA-PEG-PLLA) corresponding to the three components of the PEG cinnamate. This mixture was separated by phase fluctuation chromatography (PFC) to obtain PLLA-PEG-C in sufficient purity. This process, involving the stoichiometric control of the terminal reaction of telechelic oligomers and the utilization of PFC for fractionation, can be an efficient method for synthesizing end-functionalized diblock copolymers from readily available telechelic oligomers. (C) 2000 John Wiley & Sons, Inc. [References: 19]
机译:聚(L-丙交酯)(PLLA)和聚(氧乙烯)(PEG)在PEG嵌段中具有肉桂酸酯末端的AB二嵌段共聚物是通过将L-丙交酯和部分末端改性的PEG共聚,然后进行分馏制备的。第一步是用肉桂酰氯(CC)对PEG进行末端修饰,其中PEG羟基末端的肉桂酸化程度大致由两种反应物的进料比控制,所得PEG肉桂酸酯与L-进行共聚。丙交酯生成未反应的PEG二肉桂酸酯(C-PEG-C),二嵌段共聚物(PLLA-PEG-C)和三嵌段共聚物(PLLA-PEG-PLLA)的混合物,它们对应于PEG肉桂酸酯的三个组分。通过相波动色谱法(PFC)分离该混合物以获得足够纯度的PLLA-PEG-C。该过程涉及对远螯螯合的低聚物的末端反应进行化学计量控制和利用PFC进行分馏,这是一种从容易获得的远螯螯合的低聚物合成末端官能化的二嵌段共聚物的有效方法。 (C)2000 John Wiley&Sons,Inc. [参考:19]

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