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由胺化刚性棒状大分子和氧化石墨烯双重增强的超强、韧性、抗撕裂和抗折叠聚酰亚胺薄膜。

Ultrastrong, Ductile, Tear- and Folding-Resistant Polyimide Film Doubly Reinforced by an Aminated Rigid-Rod Macromolecule and Graphene Oxide.

作者信息

Jin Yewei, Yu Boshi, Liu Yue, Shen Tao, Peng Mao

机构信息

MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, China.

出版信息

ACS Appl Mater Interfaces. 2024 Sep 4;16(35):46728-46740. doi: 10.1021/acsami.4c08364. Epub 2024 Aug 21.

Abstract

As a high-performance polymer with exceptional mechanical, thermal, and insulating properties, polyimide (PI) has been widely used as flexible circuit substrates for microelectronics, portable electronics, and wearable devices. Due to the growing demand for further thinning and lightweighting of electronic products, PI films need to have further enhanced mechanical properties. Traditional nanofiller-reinforced PI films often exhibit reduced ductility and limited improvements in strength. Therefore, it remains a challenge to simultaneously improve the strength and toughness of PI films while preserving their ductility. In this study, we report an exceptionally strong and ductile PI doubly reinforced by one-dimensional rigid-rod para-aramid, poly(-aminophenylene aminoterephthalamide ((NH)-PPTA), and two-dimensional graphene oxide (GO) nanosheets. The amino side groups of (NH)-PPTA react with the anhydride end groups of PI, forming covalent bonds. At a (NH)-PPTA content of only 0.4 wt %, the (NH)-PPTA/PI film displays significantly enhanced mechanical properties. When 0.4 wt % of GO is added together with (NH)-PPTA, the tensile strength, tensile toughness, and strain at break reach 284.8 ± 5.3 MPa, 277.9 ± 7.6 MJ/m, and 132.6 ± 3.8%, which are ∼178, ∼312, and ∼51% higher, respectively, than those of pure PI. Moreover, the doubly reinforced PI film also exhibits a 206% increase in tear strength and significantly enhanced folding resistance. The dual reinforcement of PI with (NH)-PPTA and GO improves the mechanical properties more efficiently than any single reinforcing agents previously reported and overcomes the disadvantage of most inorganic nanofillers that reduce ductility.

摘要

作为一种具有优异机械、热和绝缘性能的高性能聚合物,聚酰亚胺(PI)已被广泛用作微电子、便携式电子设备和可穿戴设备的柔性电路基板。由于电子产品对进一步减薄和轻量化的需求不断增加,PI薄膜需要具有进一步增强的机械性能。传统的纳米填料增强PI薄膜通常表现出延展性降低和强度提升有限的问题。因此,在保持PI薄膜延展性的同时,同时提高其强度和韧性仍然是一个挑战。在本研究中,我们报道了一种由一维刚性棒状对位芳纶聚(对亚苯基对苯二甲酰胺)((NH)-PPTA)和二维氧化石墨烯(GO)纳米片双重增强的异常坚固且有延展性的PI。(NH)-PPTA的氨基侧基与PI的酸酐端基反应,形成共价键。在(NH)-PPTA含量仅为0.4 wt%时,(NH)-PPTA/PI薄膜显示出显著增强的机械性能。当0.4 wt%的GO与(NH)-PPTA一起添加时,拉伸强度、拉伸韧性和断裂应变分别达到284.8±5.3 MPa、277.9±7.6 MJ/m³和132.6±3.8%,分别比纯PI高出约178%、约312%和约51%。此外,双重增强的PI薄膜的撕裂强度也提高了206%,并且抗折叠性显著增强。用(NH)-PPTA和GO对PI进行双重增强比先前报道的任何单一增强剂都更有效地改善了机械性能,并克服了大多数无机纳米填料降低延展性的缺点。

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