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首页> 外文期刊>ACS applied materials & interfaces >Recyclable, Self-Healable, and Highly Malleable Poly(urethane-urea)s with Improved Thermal and Mechanical Performances
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Recyclable, Self-Healable, and Highly Malleable Poly(urethane-urea)s with Improved Thermal and Mechanical Performances

机译:具有改进的热和机械性能的可回收性,自愈性和高度可锻造的聚(氨基甲酸酯 - 脲)S.

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摘要

Developing recyclable, self-healable, and highly malleable thermosets is one of the keys to relieve environmental pollution and meet our increasing demand for "greener" materials. Hindered urea bonds (HUBs) have been successfully incorporated in preparing dynamic covalent networks with those desirable properties. However, one key drawback is the low thermal stability and poor mechanical performance of previously reported systems. In this work, we demonstrated that the incorporation of aromatic moiety-containing diamine-based HUBs can greatly improve the thermal and mechanical performance of the poly(urethane-urea)s (PUUs) while still maintaining the desirable recycling, self-healing, and reprocessing properties. Studies on model compounds revealed the origin of the thermal stability and demonstrated the dynamic property. The aromatic-containing diamine-based HUBs were then used to prepare a series of catalyst-free PUUs with improved thermal and mechanical properties. The dynamic HUBs significantly reduced the relaxation timescale and allowed the PUU networks to be recycled multiple times. The healed and recycled PUUs regained most of the mechanical strength and integrity of the original material. Therefore, this unique and simple approach is expected to open up new avenues to design PUUs with optimal performance for various applications.
机译:开发可回收的,自我恢复的,高度可延展的热固性件是缓解环境污染的钥匙之一,并满足我们对“更环保”材料的日益增长的需求。已经成功地掺入了具有这些理想性质的动态共价网络的阻碍尿素键(集线器)。然而,一个关键缺陷是先前报告的系统的低热稳定性和差的机械性能。在这项工作中,我们证明掺入含芳族部分的二胺的枢纽可以大大提高聚(尿道 - 尿素)S(PUUS)的热和力学性能,同时保持所需的回收,自我愈合和重新处理属性。模型化合物的研究揭示了热稳定性的起源,并证明了动态性质。然后使用含芳族二胺的枢纽来制备一系列的无催化剂Puus,其具有改善的热和机械性能。动态集线器显着降低了松弛时间尺度,并允许Puu网络多次回收。愈合和再生的普斯重新获得原始材料的大部分机械强度和完整性。因此,预计这一独特且简单的方法将开辟新的途径,以设计PUAS,为各种应用提供最佳性能。

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