首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Star-shaped poly(L-lactide)s with variable numbers of hydroxyl groups at polyester arms chain-ends and directly attached to the star-shaped core - Controlled synthesis and characterization
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Star-shaped poly(L-lactide)s with variable numbers of hydroxyl groups at polyester arms chain-ends and directly attached to the star-shaped core - Controlled synthesis and characterization

机译:在聚酯臂链末端具有可变数目羟基的星形聚(L-丙交酯),直接连接到星形核上-受控合成和表征

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Star-shaped poly(L-lactide)s (PLAs) bearing variable numbers of secondary hydroxyl groups at linear arms chain-ends and primary hydroxyl groups directly attached to dipentaerithritol core (DPE) ((HO)(6-x)DPE(PLA-OH)(x), where x = 1- 6) were prepared and then analyzed by means of size exclusion chromatography (SEC), 111 NMR spectroscopy, MALDI-TOF mass spectrometry, and eventually by Liquid Chromatography at Critical Conditions (LC-CC). First, starting from DPE(OH)(6) a series of polyols with various number of hydroxyl groups has been obtained ((BnO)(6-x)DPE(OH)(x), where Bn denotes benzyl moiety and x = 1 - 6). The living ring-opening polymerization of L-lactide (LA) with (BnO)(6-x)DPE(OH)(x)/tin(II) octoate mixtures as initiating and catalytic system led to star-shaped (BnO)(6-x)DPE(PLA-OH), polymers with molar masses (M,) controlled by LA and DPE concentrations ratio in the feed. Finally, deprotection (via hydrogenation) gave a series of (HO)(6-x)DPE(PLA-OH), PLA's. SEC (with Multiangle Laser Light Scattering Detector (MALLS)), NMR, and MALDI-TOF analyses confirmed the assumed structures and M-n's of the prepared (BnO)(6-x)DPE(PLA-OH)(x) and (HO)(6-x)DPE(PLA-OH)(x) PLA's. LC-CC measurements revealed that for (BnO)(6-x)DPE (PLA-OH)(x) series the elution volumes increase monotonically with the increasing number of -PLA-OH arms in one macromolecule and are independent on the given PLA molar mass because of the critical conditions. Contrary to the polymers having the protected core hydroxyl groups, the elution volume for (HO)(6-x)DPE(PLA-OH)(x) series decreases with the increasing number of -PLA-OH arms reaching a minimum value for 4-arm PLA and then slightly increases for 5- and 6-arm PLA. (c) 2005 Wiley Periodicals, Inc.
机译:星形聚(L-丙交酯)(PLA),在线性臂链末端带有可变数目的仲羟基和直接附着在二季戊四醇核心(DPE)((HO)(6-x)DPE(PLA)上的伯羟基-OH)(x),其中x = 1-6),然后通过尺寸排阻色谱(SEC),111 NMR光谱,MALDI-TOF质谱分析,最后通过关键条件下的液相色谱(LC- CC)。首先,从DPE(OH)(6)开始,获得了一系列具有各种羟基数的多元醇((BnO)(6-x)DPE(OH)(x),其中Bn表示苄基部分,x = 1 -6)。 L-丙交酯(LA)与(BnO)(6-x)DPE(OH)(x)/锡(II)辛酸酯混合物作为引发和催化体系的活性开环聚合反应生成星形(BnO)( 6-x)DPE(PLA-OH),摩尔质量(M)受进料中LA和DPE浓度比控制的聚合物。最后,脱保护(通过氢化)得到一系列的(HO)(6-x)DPE(PLA-OH),PLA。 SEC(具有多角度激光散射检测器(MALLS)),NMR和MALDI-TOF分析证实了所制备的(BnO)(6-x)DPE(PLA-OH)(x)和( HO)(6-x)DPE(PLA-OH)(x)PLA。 LC-CC测量表明,对于(BnO)(6-x)DPE(PLA-OH)(x)系列,洗脱体积随一个大分子中-PLA-OH臂数的增加而单调增加,并且与给定的PLA无关由于临界条件而产生的摩尔质量。与具有受保护的核心羟基的聚合物相反,(HO)(6-x)DPE(PLA-OH)(x)系列的洗脱体积随着-PLA-OH臂数的增加而减小,达到4的最小值臂PLA,然后稍微增加5臂和6臂PLA。 (c)2005年Wiley Periodicals,Inc.

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