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Synthesis and properties of biodegradable supramolecular polymers based on polylactide-block-poly(delta-valerolactone)-block-polylactide triblock copolymers

机译:基于聚酰胺 - 聚(Delta-valerolodone) - Block-polylactide三嵌段共聚物的可生物降解的超分子聚合物的合成与性能

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Biodegradable supramolecular polymers (SMPs) were synthesized by the end-functionalization of polylactide-block-poly(-valerolactone)-block-polylactide (PLA-PVL-PLA) triblock copolymers with 2-ureido-4[1H]-pyrimidinone (UPy) self-complementary quadruple hydrogen-bonding units. The end-functionalized PLA-PVL-PLA copolymers exhibit the typical characteristics of thermoplastic elastomers. Thermal properties, crystallization behavior, crystalline structure and other properties of SMPs can be adjusted by changing the length and stereostructure of PLA blocks. The UPy groups retard the crystallization of PLA and PVL blocks, and the crystallization of PVL blocks is also depressed with increasing PLA blocks. Tensile testing reveals that the prepared SMPs present excellent mechanical properties, and dynamic mechanical analysis indicates that the heat resistance of l-SMPs is better than that of d,l-SMPs. Shape memory property of SMPs was also studied, and the recovery ratio of SMPs with PDLLA blocks can reach 100%. The recovery ratio of l-SMPs is depressed as the crystallizable PLLA blocks increase. This study has systemically investigated the effect of the composition, stereostructure and crystallizability of PLA blocks on the properties of SMPs, which would provide potential approaches for the synthesis of biodegradable SMPs with tunable properties. (C) 2017 Society of Chemical Industry
机译:通过聚酰胺 - 嵌段 - 聚( - 甲苯烷酮) - Block-polactatter(PLA-PVL-PLA)三嵌段共聚物的结束 - 官能化合成可生物降级的超分子聚合物(SMPs)合成了2-Ureido-4 [1H] - 吡啶酮(UPY)自互补四重氢键单元。结束官能化PLA-PVL-PLA共聚物表现出热塑性弹性体的典型特性。通过改变PLA块的长度和立体结构,可以通过改变PLA块的长度和立体结构来调节SMP的热性质,结晶行为,结晶结构和其他性能。 UPY组延迟了PLA和PV1嵌段的结晶,并且PV1块的结晶也随着PLA块的增加而抑制。拉伸试验显示,制备的SMPS具有优异的机械性能,动态的力学分析表明L-SMP的耐热性优于D,L-SMPS。还研究了SMP的形状记忆特性,并且使用PDLLA块的SMP的恢复比率可以达到100%。随着结晶PLLA块增加,L-SMP的回收率被抑制。本研究全身调查了PLA块对SMPS性能的组合物,立体结构和结晶性的影响,这将为具有可调谐性质合成可生物降解的SMP的潜在方法。 (c)2017化学工业协会

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