Department of Polymer Materials and Engineering, South China University of Technology, Guangzhou 510640, People's Republic of China.
ACS Macro Lett. 2021 Feb 16;10(2):231-236. doi: 10.1021/acsmacrolett.0c00852. Epub 2021 Jan 22.
Construction of segregated structures in polymer composites is an efficient way to improve the electrical conductivity and reduce the percolation threshold by confining conductive fillers into the interstitial areas between polymer domains. Yet, it remains a great challenge to engineer segregated structures into thermosets as the cross-linked structure prohibits the "sintering" of polymer domains into a coherent material. Thus far, the state of art approaches to create segregated network in cross-linked polymers involve tedious procedures and are limited to latex mixing technology. Here, inspired by solid state plasticity of vitrimers, we present a simple method to create segregated structures in covalently cross-linked networks by compression molding of conductive filler-coated vitrimer granules. Specifically, dynamic boronic ester-cross-linked styrene-butadiene rubber vitrimers was ground into granules and then mechanically mixed with carbon nanotubes (CNTs) to coat CNTs onto vitrimer granules, followed by hot-press molding. During the molding process, the transesterifications of boronic esters enable cross-linked granules to adhere together through molecular bonding, and the high viscosity of granules forces CNTs to selectively localize at their boundary region. As a result, coherently segregated composites with an ultralow percolation threshold, good flexibility, and healing capability are obtained. With this example, we envisage that this work provides a conceptual method to create segregated structures in cross-linked polymers.
在聚合物复合材料中构建隔离结构是一种通过将导电填料限制在聚合物域之间的间隙区域内来提高电导率和降低渗流阈值的有效方法。然而,将隔离结构工程应用于热固性聚合物仍然是一个巨大的挑战,因为交联结构阻止了聚合物域“烧结”成连续的材料。到目前为止,在交联聚合物中创建隔离网络的最先进方法涉及繁琐的程序,并且仅限于乳胶混合技术。在这里,受弹性体的固态塑性的启发,我们提出了一种通过压缩模塑导电填料涂覆的 vitrimer 颗粒来在共价交联网络中创建隔离结构的简单方法。具体来说,将动态硼酸酯交联的苯乙烯-丁二烯橡胶弹性体磨成颗粒,然后与碳纳米管(CNT)机械混合,将 CNT 涂覆到弹性体颗粒上,然后进行热压成型。在成型过程中,硼酸酯的酯交换使交联颗粒通过分子键合相互粘合,并且颗粒的高粘度迫使 CNT 选择性地定位在其边界区域。结果,获得了具有超低渗流阈值、良好的柔韧性和修复能力的均匀隔离复合材料。通过这个例子,我们设想这项工作为在交联聚合物中创建隔离结构提供了一种概念性方法。