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Reconfigurable and Reprocessable Thermoset Shape Memory Polymer with Synergetic Triple Dynamic Covalent Bonds

机译:可重新配置和再加工的热固性形状记忆聚合物,具有协同三重动态共价键

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摘要

Degradable shape memory polymers (SMPs), especially for polyurethanebased SMPs, have shown great potential for biomedical applications. How to reasonably fabricate SMPs with the ideal combination of degradability, shape reconfigurability, and reprocessability is a critical issue and remains a challenge for medical disposable materials. Herein, a shape memory poly(urethane-urea) with synergetic triple dynamic covalent bonds is reported via embedding polycaprolactone unit into poly(urethane-urea) with the hindered urea dynamic bond. The single polymer network is biodegradable, thermadapt, and reprocessable, without sacrificing the outstanding shape memory performance. Such a shape memory network with plasticity and reprocessability is expected to have significant and positive impact on the medical device industry.
机译:可降解形状记忆聚合物(SMPs),特别是对于聚氨酯基础SMPS,对生物医学应用示出了巨大的潜力。 如何合理地制造SMPS具有可降解性,形状可重构性和再循环性的理想结合,是一个关键问题,仍然是医疗一次性材料的挑战。 这里,通过将聚己内酯单元嵌入聚(氨基甲酸酯 - 尿素)与受阻尿素动态键将具有协同三重动态共价键的形状记忆聚(氨基甲酸酯 - 脲)。 单个聚合物网络是可生物降解的,热轧和再加工,而不牺牲出色的形状记忆性能。 这种形状记忆网络具有可塑性和再循环性,预计对医疗器械行业具有显着且积极的影响。

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