首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Fully biobased thermoplastic elastomers: Synthesis of highly branched linear comb poly(beta-myrcene)-graft-poly(L-lactide) copolymers with tunable mechanical properties
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Fully biobased thermoplastic elastomers: Synthesis of highly branched linear comb poly(beta-myrcene)-graft-poly(L-lactide) copolymers with tunable mechanical properties

机译:完全生物化的热塑性弹性体:高度支化的线性梳理(β-氨基) - 移植物 - 聚(L-丙交酯)共聚物的合成,具有可调谐机械性能

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摘要

Biobased thermoplastic elastomers are of interest for their merits, especially renewability and sustainability. In this work, a series of fully biobased linear comb poly(beta-myrcene)-graft-poly(L-lactide) (PM-g-PLLA) copolymers consisting of interior rubbery block and exterior semicrystalline block were synthesized via ring-opening polymerization of L-lactide using hydroxylated poly(beta-myrcene) as macroinitiator. To evaluate the effects of branch length and graft density of poly(beta-myrcene) on the performances of these obtained copolymers, the chemical compositions and molecular weights, crystal structures and spherulite morphologies, phase morphologies, thermal and mechanical properties were systematically analyzed by various techniques. Analysis of NMR and GPC indicated that graft copolymers were successfully obtained as designed. Two distinct glass transitions corresponding to the two building blocks observed from both DMA and DSC measurements suggested the occurrence of microphase separation, which was further confirmed by SAXS and AFM morphological characterizations. Results of DSC, WAXD, and POM showed that the crystallization behavior of the graft copolymers depends on graft density and branch length. Tensile test suggested that the mechanical properties of graft copolymers depend on PM/ PLLA composition, particularly graft density and branch length, which could be readily tailorable to different applications. (C) 2018 Elsevier Ltd. All rights reserved.
机译:Biobased热塑性弹性体对其优点,特别是可再生性和可持续性感兴趣。在这项工作中,通过开环聚合合成了由内部橡胶嵌段和外半结块组成的一系列全生物化的线性梳理聚(β-脲烯)血糖 - 聚(L-丙交酯)(PM-G-PLLA)共聚物用羟基化聚(β-脲烯)作为大型磷酸酯的L-丙交酯。为了评估聚(β-脲烯)的分支长度和移植物密度对这些所得共聚物的性能,化学组合物和分子量,晶体结构和球晶形态,相形形貌,热和机械性能的各种效果技巧。对NMR和GPC的分析表明,成功获得了接枝共聚物,如设计。对应于从DMA和DSC测量观察到的两个结构块对应的两个不同的玻璃转变表明,通过SAXS和AFM形态表征进一步证实了微相分离的发生。 DSC,WAXD和POM的结果表明接枝共聚物的结晶行为取决于移植物密度和分支长度。拉伸试验表明接枝共聚物的机械性能取决于PM / PLLA组合物,特别是移植物密度和分支长度,这可以容易地为不同的应用程序定制。 (c)2018年elestvier有限公司保留所有权利。

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