Xu Zhenghong, Xiong Zijia, Gong Minghui, Zeng Qing, Hong Jinxiang, Fan Jin
State Key Laboratory of High Performance Civil Engineering Materials, Nanjing, 210008, China.
Sobute New Materials Co., Ltd, Nanjing, 211000, Jiangsu, China.
J Mol Model. 2023 Nov 11;29(12):368. doi: 10.1007/s00894-023-05768-1.
Graphene oxide(GO) has been widely used in asphalt modification due to its excellent properties. To reveal the interaction effect between GO and asphalt materials, the microscopic behavior and molecular structure changes of asphalt and GO/asphalt were investigated by molecular dynamics (MD) simulations. Mean square displacement (MSD) results showed that GO significantly inhibited the diffusion of molecules of asphalt components. Radial distribution function (RDF) results that GO destroys the original sol-type structure of asphalt. Simultaneously, GO adsorbed resins at low-temperature, adsorbed asphaltenes at high-temperature, and dispersed as a dispersed phase in the light components. The concentration of the dispersed phase in the asphalt colloidal structure was increased and the mutual attraction was enhanced. This improves the deformation resistance at high temperature, but weakens the ductility at low temperatures.
To investigate the mechanism of action of GO-modified asphalt, the asphalt model and the GO/asphalt composite system model were constructed using the Amorphous Cell module in Materials Studio 2020 software. Subsequently, molecular dynamics simulations of the GO/asphalt composite system were performed using the Forcite module, while the interactions between atoms and molecules were described using the COMPASS II force field.
氧化石墨烯(GO)因其优异的性能已被广泛应用于沥青改性。为揭示GO与沥青材料之间的相互作用效果,通过分子动力学(MD)模拟研究了沥青以及GO/沥青的微观行为和分子结构变化。均方位移(MSD)结果表明,GO显著抑制了沥青组分分子的扩散。径向分布函数(RDF)结果表明,GO破坏了沥青原有的溶胶型结构。同时,GO在低温下吸附树脂,在高温下吸附沥青质,并以分散相的形式分散在轻质组分中。沥青胶体结构中分散相的浓度增加,相互吸引力增强。这提高了高温下的抗变形能力,但削弱了低温下的延展性。
为研究GO改性沥青的作用机理,使用Materials Studio 2020软件中的非晶胞模块构建了沥青模型和GO/沥青复合体系模型。随后,使用Forcite模块对GO/沥青复合体系进行分子动力学模拟,同时使用COMPASS II力场描述原子和分子之间的相互作用。