Department of Polymer Engineering, University of Akron , Akron, Ohio 44325, United States.
ACS Appl Mater Interfaces. 2016 Oct 5;8(39):26258-26265. doi: 10.1021/acsami.6b06776. Epub 2016 Sep 23.
Self-healing materials are an emerging class of modern materials gaining importance due to environmental and energy concerns. Materials based on the complexation of oppositely charged polyelectrolytes, usually in the form of coatings and films, have been shown to have water activated self-healing properties. In this work, the self-healing of bulk branched poly(ethylene imine) and poly(acrylic acid) (BPEI/PAA) complex is studied as a function of the aqueous solutions used to activate the self-healing. Specifically, exposure to different salt solutions and solutions of different pH was examined including sodium and copper ion containing solutions as well as acidic and basic solutions. By applying NaCl treatment, especially followed by exposure to DI water, the self-healing ability of the BPEI/PAA complex was enhanced. In contrast, after treated by CuCl, the BPEI/PAA complex lost its self-healing ability, showing an ability to modulate the ability to self-heal as a function of external stimulus. In addition to improving the ability to self-heal using salt as compared to using DI water alone, acidic and basic solutions can also improve the ability to self-heal. The self-healing is caused by chain mobility at the cut interface of the polyelectrolyte complex material which is controlled by charge density along the polyelectrolyte backbone as well as ionic cross-link density, and correlation between this mobility to rheological behavior is made. Tensile testing and determination of fracture toughness were used to characterize self-healing.
自修复材料是一类新兴的现代材料,由于环境和能源问题而变得越来越重要。基于带相反电荷的聚电解质络合的材料,通常以涂层和薄膜的形式,已被证明具有水激活的自修复性能。在这项工作中,研究了作为水激活自修复功能的函数的支化聚乙烯亚胺和聚丙烯酸(BPEI/PAA)复合物的本体自修复。具体而言,研究了暴露于不同盐溶液和不同 pH 值溶液(包括含钠离子和铜离子的溶液以及酸性和碱性溶液)对自修复的影响。通过施加 NaCl 处理,特别是随后暴露于去离子水,增强了 BPEI/PAA 复合物的自修复能力。相比之下,用 CuCl 处理后,BPEI/PAA 复合物失去了自修复能力,表现出根据外部刺激调节自修复能力的能力。与单独使用去离子水相比,使用盐不仅可以提高自修复能力,而且酸性和碱性溶液也可以提高自修复能力。自修复是由聚电解质复合物材料的切割界面处的链流动性引起的,这种流动性受聚电解质主链上的电荷密度以及离子交联密度的控制,并与流变行为相关。拉伸测试和断裂韧性的测定用于表征自修复。