Tam Lik-Ho, Wu Chao
School of Transportation Science and Engineering, Beihang University, 37 Xueyuan Road, Beijing 100191, China.
Nanomaterials (Basel). 2017 Oct 13;7(10):324. doi: 10.3390/nano7100324.
The strong structural integrity of polymer nanocomposite is influenced in the moist environment; but the fundamental mechanism is unclear, including the basis for the interactions between the absorbed water molecules and the structure, which prevents us from predicting the durability of its applications across multiple scales. In this research, a molecular dynamics model of the epoxy/single-walled carbon nanotube (SWCNT) nanocomposite is constructed to explore the mechanism of the moisture effect, and an analysis of the molecular interactions is provided by focusing on the hydrogen bond (H-bond) network inside the nanocomposite structure. The simulations show that at low moisture concentration, the water molecules affect the molecular interactions by favorably forming the water-nanocomposite H-bonds and the small cluster, while at high concentration the water molecules predominantly form the water-water H-bonds and the large cluster. The water molecules in the epoxy matrix and the epoxy-SWCNT interface disrupt the molecular interactions and deteriorate the mechanical properties. Through identifying the link between the water molecules and the nanocomposite structure and properties, it is shown that the free volume in the nanocomposite is crucial for its structural integrity, which facilitates the moisture accumulation and the distinct material deteriorations. This study provides insights into the moisture-affected structure and properties of the nanocomposite from the nanoscale perspective, which contributes to the understanding of the nanocomposite long-term performance under the moisture effect.
聚合物纳米复合材料的强结构完整性在潮湿环境中会受到影响;但其基本机制尚不清楚,包括吸收的水分子与结构之间相互作用的基础,这使得我们无法预测其在多个尺度上应用的耐久性。在本研究中,构建了环氧/单壁碳纳米管(SWCNT)纳米复合材料的分子动力学模型,以探索水分影响的机制,并通过关注纳米复合材料结构内部的氢键(H键)网络来提供分子相互作用分析。模拟结果表明,在低水分浓度下,水分子通过有利地形成水-纳米复合材料氢键和小簇来影响分子相互作用,而在高浓度下,水分子主要形成水-水氢键和大簇。环氧基质和环氧-SWCNT界面中的水分子破坏分子相互作用并使机械性能恶化。通过确定水分子与纳米复合材料结构和性能之间的联系,表明纳米复合材料中的自由体积对其结构完整性至关重要,这促进了水分积累和明显的材料劣化。本研究从纳米尺度的角度深入了解了纳米复合材料受水分影响的结构和性能,有助于理解纳米复合材料在水分作用下的长期性能。