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首页> 外文期刊>Journal of Polymer Research >Polymer networks prepared from 4-arm star-shaped L-lactide oligomers with different arm lengths and their semi-interpenetrating polymer networks containing poly (L-lactide)
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Polymer networks prepared from 4-arm star-shaped L-lactide oligomers with different arm lengths and their semi-interpenetrating polymer networks containing poly (L-lactide)

机译:由具有不同臂长的四臂星形L-丙交酯低聚物制备的聚合物网络及其包含聚L-丙交酯的半互穿聚合物网络

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摘要

Polymer networks and semi-interpenetrating polymer networks (semi-IPNs) based on poly(L-lactide) (PLA) were prepared by reactions of 2,4-tolylene diisocyanate (TDI) and hydroxy-terminated 4-arm star-shaped L-lactide oligomers (H4LAO(n)'s) with the degrees of polymerization of lactate unit per one arm, n = 3, 5 and 10 in the absence and presence of PLA, respectively. Thermal, mechanical properties and morphologies of the TDI-bridged H4LAO(n)'s (TH4LAO(n)'s) and TH4LAO(n)/PLA semi-IPNs were evaluated by comparing with those of PLA. Scanning electron microscopic observation revealed that compatibility between the two components of TH4LAO(n)/PLA semi-IPNs becomes better with increasing PLA content and n value. Especially, no clear phase-separation was observed for TH4LAO(10)/PLA 25/75. All the TH4LAO(n) networks were substantially amorphous and their tan delta peak or glass transition temperatures increased with decreasing n value. The tan delta peak temperatures of TH4LAO(3) (86.2 degrees C) and TH4LAO(5) (79.8 degrees C) were much higher than that of PLA (55.1 degrees C). All the semi-IPNs except for TH4LAO(10)/PLA 25/75 displayed two tan delta peaks related to TH4LAO(n) and PLA. TH4LAO(3)/PLA 75/25 exhibited a much higher E' at around 50-90 degrees C than PLA. TH4LAO(5) had the highest tensile strength (90 MPa), modulus (2.5 GPa) and tensile toughness (2.1 MJm(-3)) among the TH4LAO(n)'s, which were higher than those of PLA (51 MPa, 2.0 GPa and 0.5 MJ m(-3)), while the semi-IPNs did not exhibit much better tensile properties than PLA did.
机译:通过2,4-甲苯二异氰酸酯(TDI)与羟基封端的4臂星形L-基的反应,制备了基于聚(L-丙交酯)(PLA)的聚合物网络和半互穿聚合物网络(semi-IPN)。丙交酯低聚物(H4LAO(n)),每臂的乳酸单位聚合度分别为n = 3、5和10(不存在PLA时)。通过与PLA的比较,评估了TDI桥接的H4LAO(n)和TH4LAO(n)/ PLA半IPN的热,机械性能和形貌。扫描电子显微镜观察表明,随着PLA含量和n值的增加,TH4LAO(n)/ PLA半IPNs两种组分之间的相容性变得更好。特别是,对于TH4LAO(10)/ PLA 25/75,没有观察到明确的相分离。所有的TH4LAO(n)网络基本上是非晶态的,并且其tanδ峰或玻璃化转变温度随n值的降低而增加。 TH4LAO(3)(86.2摄氏度)和TH4LAO(5)(79.8摄氏度)的tanδ峰值温度比PLA(55.1摄氏度)的高得多。除TH4LAO(10)/ PLA 25/75外,所有半IPN均显示了与TH4LAO(n)和PLA有关的两个tanδ峰。 TH4LAO(3)/ PLA 75/25在约50-90摄氏度时显示出比PLA高得多的E'。在TH4LAO(n)中,TH4LAO(5)的拉伸强度(90 MPa),模量(2.5 GPa)和拉伸韧性(2.1 MJm(-3))最高,高于PLA(51 MPa, 2.0 GPa和0.5 MJ m(-3)),而半IPN并没有比PLA表现出更好的拉伸性能。

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