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首页> 外文期刊>Journal of Applied Polymer Science >Spontaneous transesterification reactions between poly(lactide-co- glycolide) and poly(trimethylene carbonate) at the interface
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Spontaneous transesterification reactions between poly(lactide-co- glycolide) and poly(trimethylene carbonate) at the interface

机译:界面处的聚丙交酯-乙交酯与碳酸三亚甲基酯之间的自发酯交换反应

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摘要

Poly(lactide) (PLA) and its copolymers can be made from naturally occurring materials. They are ideal candidates as sustainable materials to replace the petroleum based polymers. However, these polymers often are brittle so toughening is needed. One of the most effective toughening methods is to reactive blend brittle polymers with materials having very different rigidity. This approach requires that the two materials chemically bond with each other at the interface to compatibilize the blends. Thus, to design and make reactive systems is a key to the success of reactive blending. In this article, we studied toughening poly(lactide-co-glycolide) (PLGA) with a rubbery material poly(trimethylene carbonate) (PTMC). We observed that PTMC spontaneously reacted with PLGA during melt blending. The reaction produced PLGA-co-PTMC copolymers that stayed at the PLGA/ PTMC interface. Those copolymers not only helped to create a stable blend microstructure at a length scale of 100 nm but also promoted the bonding between the PLGA and PTMC domains. It is interesting that the reaction did not need a catalyst or initiator. We speculated that this reaction between PLGA and PTMC was a transesterifica- tion reaction. This reaction is easy to achieve and is expected to broaden the property range of the PLGA and other degradable polyesters, enabling them to replace certain types of petroleum based polymers.
机译:聚丙交酯(PLA)及其共聚物可以由天然材料制成。它们是替代石油基聚合物的可持续材料的理想选择。但是,这些聚合物通常是脆性的,因此需要增韧。最有效的增韧方法之一是使脆性聚合物与具有截然不同的刚度的材料反应混合。该方法要求两种材料在界面处彼此化学键合以使共混物相容。因此,设计和制造反应性系统是反应混合成功的关键。在本文中,我们研究了使用橡胶状材料聚碳酸三亚甲基酯(PTMC)来增韧聚丙交酯-乙交酯共聚物(PLGA)。我们观察到,PTMC在熔融共混过程中与PLGA自发反应。该反应产生了留在PLGA / PTMC界面的PLGA-共-PTMC共聚物。这些共聚物不仅有助于在100 nm的长度尺度上创建稳定的共混物微观结构,而且还促进了PLGA和PTMC域之间的键合。有趣的是,该反应不需要催化剂或引发剂。我们推测PLGA和PTMC之间的反应是酯交换反应。该反应易于实现,并有望扩大PLGA和其他可降解聚酯的性能范围,使它们能够代替某些类型的石油基聚合物。

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