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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Industrializable and sustainable approach for preparing extended-chain crystals of biodegradable poly(butylene succinate) and their applications
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Industrializable and sustainable approach for preparing extended-chain crystals of biodegradable poly(butylene succinate) and their applications

机译:制备可生物降解聚(丁二酸丁酯)的延长链晶体的可促进和可持续的方法及其应用

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摘要

While polymer extended-chain crystals (ECCs) own promising physicochemical properties, effective product and application of ECCs is still challenging. Here, we develop an industrializable and sustainable production procedure process for ECCs of poly(butylene succinate) (PBS), which consists of a specially-designed melt mixing of the polymer and urea in internal mixer to produce inclusion complex and thereafter a washing step with water. The prepared ECCs show melting point at 137 degrees C and crystallinity higher than 90%, and the auxiliary materials, urea and water, can be recycled. The ECCs are further used as highly effective nucleating agent and reinforcer for commercial PBS, resulting in remarkable simultaneous increases in crystallization temperature, yield stress and elongation at break due to the perfect lattice matching and interfacial compatibility. Moreover, a shape memory material of single component of PBS has been fabricated with the in-situ addition of ECCs.
机译:虽然聚合物延长链晶体(ECC)拥有有希望的物理化学性质,但ECC的有效产品和应用仍然具有挑战性。 在此,我们为聚(丁二烯琥珀酸酯)(PBS)的ECC制定可持续的和可持续的生产程序方法,该工艺包括聚合物和尿素在内部混合器中的专门设计的熔体混合,以产生包合物,然后是洗涤步骤 水。 所制备的ECC在137摄氏度下显示熔点,结晶度高于90%,并且可以再循环辅助材料,尿素和水。 ECCS进一步用作高效的成核剂和用于商业PBS的增强剂,导致结晶温度显着增加,由于完美的晶格匹配和界面相容性,屈服应力和断裂处的伸长率。 此外,通过原位添加ECC制造了PBS的单个组分的形状记忆材料。

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