Wang Xiao-Lin, Lu Zhong-Yuan, Li Ze-Sheng, Sun Chia-Chung
State Key Laboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry, Jilin University, Changchun 130023, China.
Langmuir. 2007 Jan 16;23(2):802-8. doi: 10.1021/la061492h.
Molecular dynamics simulations are applied to study the adsorption of polyethylene with different chain lengths on patterned graphite surfaces that contain nanoscale protrusions. The influence of the nanostructure on the strong attractive interaction inherently in the hydrophobic polyethylene and hydrophobic graphite system is investigated by modifying the top surface area and the height and the shape of the protrusions. The results are analyzed in terms of the chain configuration, the adsorption energy, the global orientational order parameter, and the normalized surface-chain contacting pair number in the first adsorption layer. When the size of the protrusion increases, the adsorption energy, the order parameter, and the normalized surface-chain contacting pair number decrease at a fixed chain length. When the size of the protrusion is fixed, the average adsorption energy per monomer and the order parameter decrease with increasing chain length because of the stronger intramolecular interactions between the monomers. Changing the protrusion shape in a suitable way will effectively reduce the strong surface-chain interaction.
应用分子动力学模拟研究不同链长的聚乙烯在含有纳米级凸起的图案化石墨表面上的吸附。通过改变凸起的顶面面积、高度和形状,研究纳米结构对疏水性聚乙烯和疏水性石墨体系中固有强吸引相互作用的影响。从链构型、吸附能、全局取向序参数以及第一吸附层中的归一化表面链接触对数等方面对结果进行了分析。当凸起尺寸增加时,在固定链长下吸附能、序参数和归一化表面链接触对数会降低。当凸起尺寸固定时,由于单体之间更强的分子内相互作用,每个单体的平均吸附能和序参数会随着链长的增加而降低。以合适的方式改变凸起形状将有效降低强表面链相互作用。