首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >One-pot synthesis and characterization of hyperbranched poly(ester-amide)s from commercially available dicarboxylic acids and multihydroxyl secondary Amines
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One-pot synthesis and characterization of hyperbranched poly(ester-amide)s from commercially available dicarboxylic acids and multihydroxyl secondary Amines

机译:由市售二元羧酸和多羟基仲胺一锅法合成和表征超支化聚(酯酰胺)

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摘要

A convenient and cost-effective strategy for synthesis of hyperbranched poly(ester-amide)s from commercially available dicarboxylic acids (A(2)) and multihydroxyl secondary amine (CB2) has been developed. By optimizing the conditions of model reactions, the AB(2)-type intermediates were formed dominantly during the initial reaction stage. Without any purification, the AB(2) intermediate was subjected to thermal polycondensation in the absence of any catalyst to prepare the aliphatic and semiaromatic hyperbranched poly(ester-amide)s bearing multi-hydroxyl end-groups. The FTIR and H-1 NMR spectra indicated that the polymerization proceeded in the proposed way. The DBs of the resulting polymers were confirmed by a combination of inverse-gated decoupling C-13 NMR, and DEPT-135 NMR techniques. The DBs of the hyperbranched poly(ester-amide)s were in the range of 0.44-0.73, depending on the structure of the monomers used. The hyperbranched polymers exhibited moderate molecular weights with relatively broad distributions determined by SEC. All the polymers displayed low inherent viscosity (0.11-0.25 dL/g) due to the branched nature. Structural and end-group effects on the thermal properties of the hyperbranched polymers were investigated using DSC. The thermogravimetric analysis revealed that the resulting polymers exhibit reasonable thermal stability. (C) 2008 Wiley Periodicals, Inc.
机译:从市售的二元羧酸(A(2))和多羟基仲胺(CB2)合成超支化聚(酯-酰胺)的方便和具有成本效益的策略已开发。通过优化模型反应的条件,在初始反应阶段主要形成AB(2)型中间体。未经任何纯化,将AB(2)中间体在不存在任何催化剂的情况下进行热缩聚反应,以制备带有多羟基端基的脂族和半芳族超支化聚(酯酰胺)。 FTIR和H-1 NMR光谱表明,聚合以提出的方式进行。通过反向门解耦C-13 NMR和DEPT-135 NMR技术确认了所得聚合物的DB。高支化聚(酯-酰胺)的DB值在0.44-0.73的范围内,这取决于所用单体的结构。超支化聚合物表现出中等分子量,通过SEC测定具有相对较宽的分布。由于支链性质,所有聚合物均显示出低的固有粘度(0.11-0.25 dL / g)。使用DSC研究了结构和端基对超支化聚合物热性能的影响。热重分析表明,所得聚合物表现出合理的热稳定性。 (C)2008 Wiley期刊公司

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