Thomsen Bo, Kawakami Tomonori, Shigemoto Isamu, Sugita Yuji, Yagi Kiyoshi
Theoretical Molecular Science Laboratory, RIKEN , 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.
Advanced Materials Research Laboratories, Toray Industries, Inc. , 2-1 Sonoyama 3-chome, Otsu, Shiga 520-0842, Japan.
J Phys Chem B. 2017 Jun 22;121(24):6050-6063. doi: 10.1021/acs.jpcb.7b00372. Epub 2017 Jun 9.
Structures of polyamide 6 are investigated for different hydration levels using molecular dynamics (MD) simulations and quantum vibrational calculations. The MD simulations have shown that hydration leads to an increase in the diffusion coefficient, accompanied by a growth of water clusters in the polymer. The IR difference spectra upon hydration are calculated using a weight-averaged method incorporating anharmonicity of the potential energy surface. The predicted IR difference spectrum for the amide A band is in quantitative agreement with the experiment [ Iwamoto , R. ; Murase , H. J. Polym. Sci., Part B: Polym. Phys. 2003 , 41 , 1722 - 1729 ]. The proposed method, combined with experimental IR difference spectra, makes it feasible to elucidate the atomistic structure of hydrated polymer materials.
使用分子动力学(MD)模拟和量子振动计算研究了不同水合水平下聚酰胺6的结构。MD模拟表明,水合作用导致扩散系数增加,同时聚合物中水分子簇增大。采用结合势能面非谐性的加权平均法计算了水合作用下的红外差谱。酰胺A带的预测红外差谱与实验结果[岩本,R.;村濑,H.《聚合物科学杂志》,B辑:聚合物物理学,2003年,41卷,1722 - 1729页]在定量上一致。所提出的方法与实验红外差谱相结合,使得阐明水合聚合物材料的原子结构成为可能。