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源自氢键聚合物复合物的可修复和机械超强力聚合物复合材料。

Healable and Mechanically Super-Strong Polymeric Composites Derived from Hydrogen-Bonded Polymeric Complexes.

机构信息

State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun, 130012, P. R. China.

State Key Laboratory of Supramolecular Structure and Materials, Institute of Theoretical Chemistry, Jilin University, Changchun, 130023, P. R. China.

出版信息

Adv Mater. 2019 Oct;31(41):e1904882. doi: 10.1002/adma.201904882. Epub 2019 Aug 28.

Abstract

It is challenging to fabricate mechanically super-strong polymer composites with excellent healing capacity because of the significantly limited mobility of polymer chains. The fabrication of mechanically super-strong polymer composites with excellent healing capacity by complexing polyacrylic acid (PAA) with polyvinylpyrrolidone (PVPON) in aqueous solution followed by molding into desired shapes is presented. The coiled PVPON can complex with PAA in water via hydrogen-bonding interactions to produce transparent PAA-PVPON composites homogenously dispersed with nanoparticles of PAA-PVPON complexes. As healable materials, the PAA-PVPON composite materials with a glass transition temperature of ≈107.9 °C exhibit a super-high mechanical strength, with a tensile strength of ≈81 MPa and a Young's modulus of ≈4.5 GPa. The PAA-PVPON composites are stable in water because of the hydrophobic interactions among pyrrolidone groups. The super-high mechanical strength of the PAA-PVPON composite materials originates from the highly dense hydrogen bonds between PAA and PVPON and the reinforcement of in situ formed PAA-PVPON nanoparticles. The reversibility of the relatively weak but dense hydrogen bonds enables convenient healing of the mechanically strong PAA-PVPON composite materials from physical damage to restore their original mechanical strength.

摘要

由于聚合物链的迁移率受到显著限制,因此制造具有出色愈合能力的机械超强力聚合物复合材料具有挑战性。本文介绍了在水溶液中将聚丙烯酸(PAA)与聚乙烯基吡咯烷酮(PVPON)复合,然后成型为所需形状,从而制造具有出色愈合能力的机械超强力聚合物复合材料的方法。卷曲的 PVPON 可以通过氢键相互作用与 PAA 在水中复合,从而产生均相分散有 PAA-PVPON 复合物纳米颗粒的透明 PAA-PVPON 复合材料。作为可修复材料,玻璃化转变温度约为 107.9°C 的 PAA-PVPON 复合材料具有超高的机械强度,拉伸强度约为 81 MPa,杨氏模量约为 4.5 GPa。由于吡咯烷酮基团之间存在疏水相互作用,PAA-PVPON 复合材料在水中是稳定的。PAA-PVPON 复合材料的超高机械强度源于 PAA 和 PVPON 之间高度密集的氢键以及原位形成的 PAA-PVPON 纳米颗粒的增强作用。相对较弱但密集的氢键的可逆性使得机械强度高的 PAA-PVPON 复合材料能够方便地从物理损伤中进行修复,从而恢复其原始的机械强度。

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