Tang Zhenghai, Huang Qingyi, Liu Yingjun, Chen Yi, Guo Baochun, Zhang Liqun
Department of Polymer Materials and Engineering, South China University of Technology, Guangzhou 510640, P.R. China.
State Key Laboratory of Organic/Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, P.R. China.
ACS Macro Lett. 2019 Dec 17;8(12):1575-1581. doi: 10.1021/acsmacrolett.9b00836. Epub 2019 Nov 29.
The fascinating properties of carbon nanotubes (CNTs) make them highly promising in fabricating polymer composites. Yet, the property enhancements of polymer/CNTs composites remain far behind the theoretical predictions. A critical issue to resolve this dilemma is to align CNTs in polymer matrices. Thus far, the state of art approaches to create CNT alignment either require complicated preparation processes and specific apparatuses, or is limited to thermoplastic polymers. Here, inspired by the network rearrangement ability of vitrimer in the solid state, we bring forth a facile methodology to align CNT in covalently cross-linked polymers by uniaxially stretching dynamic. Specifically, dynamic boronic ester bond-cross-linked epoxidized natural rubber/CNTs vitrimer composites with randomly dispersed CNTs are prepared, which are able to rearrange the network topologies and release stress at elevated temperatures through boronic ester transesterifications. The alignment of CNTs is performed by the uniaxial stretching of the composites and subsequent cross-link reshuffling at elevated temperatures, which results in anisotropic composites with remarkably enhanced mechanical properties and reduced electrical conductivity along the stretching direction. Furthermore, the mechanical properties of the composites can be readily adjusted by changing the applied strain, relaxation time and temperature due to the modulated CNT alignment degree. With this example, we envisage that this work offers a conceptual and facile approach to align anisotropic fillers in covalently cross-linked polymers.
碳纳米管(CNTs)具有迷人的特性,使其在制造聚合物复合材料方面极具前景。然而,聚合物/碳纳米管复合材料的性能增强仍远低于理论预测。解决这一困境的关键问题是使碳纳米管在聚合物基体中取向排列。到目前为止,实现碳纳米管取向排列的现有方法要么需要复杂的制备工艺和特定的设备,要么仅限于热塑性聚合物。在此,受固态可塑交联聚合物网络重排能力的启发,我们提出了一种通过单轴动态拉伸使碳纳米管在共价交联聚合物中取向排列的简便方法。具体而言,制备了具有随机分散碳纳米管的动态硼酸酯键交联环氧化天然橡胶/碳纳米管可塑交联聚合物复合材料,该复合材料能够通过硼酸酯酯交换反应在高温下重排网络拓扑结构并释放应力。通过对复合材料进行单轴拉伸以及随后在高温下进行交联重排来实现碳纳米管的取向排列,这导致了沿拉伸方向具有显著增强的力学性能和降低的电导率的各向异性复合材料。此外,由于碳纳米管取向排列程度的调节,复合材料的力学性能可以通过改变施加的应变、松弛时间和温度轻松调节。通过这个例子,我们设想这项工作为在共价交联聚合物中取向排列各向异性填料提供了一种概念性的简便方法。