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用于强力且可返工粘合剂及完全可回收碳纤维增强复合材料的聚硫聚氨酯共价自适应网络

Polythiourethane Covalent Adaptable Networks for Strong and Reworkable Adhesives and Fully Recyclable Carbon Fiber-Reinforced Composites.

作者信息

Cui Chenhui, Chen Xingxing, Ma Li, Zhong Qianyun, Li Zhen, Mariappan Arumugam, Zhang Qiang, Cheng Yilong, He Gang, Chen Xiaoming, Dong Zhen, An Le, Zhang Yanfeng

机构信息

School of Chemistry, Xi'an Jiaotong University, Xi'an, 710049, China.

Frontier Institute of Science and Technology, Xi'an Key Laboratory of Sustainable Energy Materials Chemistry, Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an, Shaanxi 710054, China.

出版信息

ACS Appl Mater Interfaces. 2020 Oct 21;12(42):47975-47983. doi: 10.1021/acsami.0c14189. Epub 2020 Oct 6.

Abstract

The development of adhesives with superior optical and mechanical performance, solvent resistance, and reworkability is gaining increasing attention in recent years. However, traditional materials do not possess reprocessability and healing characteristics for sustainable development. Here, a superior dynamic polythiourethane (PTU) adhesive with high reprocessability was developed by introducing covalent adaptable networks (CANs). Specifically, dynamic thiocarbamate bonds (TCB) were used to prepare PTU CANs, which showed dramatically enhanced malleability and recyclability. The Young's modulus of the material was 2.0 GPa and the tensile strength was 62.7 MPa. The reprocessing temperature of CANs was reduced to 80 °C while more than 90% of their mechanical properties were retained, even after being reprocessed several times. Moreover, the highly transparent and water-resistant PTU CANs featured an excellent bonding property and reworkability for various materials including glass, with a lap shear strength of 2.9 MPa, metal (5.1 MPa), and wood (6.3 MPa), compared with commercially available adhesives. Additionally, carbon fiber-reinforced composites constructed with PTU CANs were capable of being fully recycled and reused. Importantly, laminated glass with a toughened PTU-PU elastomer interface exhibited an outstanding impact fatigue-resistance behavior, sustaining thousands of impacts. These features demonstrate that PTU CANs show great potential as sustainable materials.

摘要

近年来,具有优异光学和机械性能、耐溶剂性及可返工性的粘合剂的开发越来越受到关注。然而,传统材料不具备可持续发展所需的再加工性和自愈特性。在此,通过引入共价适应性网络(CANs)开发了一种具有高再加工性的优异动态聚硫脲(PTU)粘合剂。具体而言,利用动态硫代氨基甲酸酯键(TCB)制备PTU CANs,其展露出显著增强的延展性和可回收性。该材料的杨氏模量为2.0 GPa,拉伸强度为62.7 MPa。CANs的再加工温度降至80°C,即便经过多次再加工,仍能保留超过90%的机械性能。此外,高度透明且耐水的PTU CANs对包括玻璃、金属(搭接剪切强度为5.1 MPa)和木材(搭接剪切强度为6.3 MPa)在内的各种材料具有优异的粘结性能和可返工性,与市售粘合剂相比,玻璃的搭接剪切强度为2.9 MPa。此外,用PTU CANs构建的碳纤维增强复合材料能够完全回收和再利用。重要的是,具有增韧PTU-PU弹性体界面的夹层玻璃表现出出色的抗冲击疲劳性能,能够承受数千次冲击。这些特性表明,PTU CANs作为可持续材料具有巨大潜力。

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