Lerbret Adrien, Lelong Gérald, Mason Philip E, Saboungi Marie-Louise, Brady John W
Department of Food Science, Stocking Hall, Cornell University, Ithaca, NY 14853, USA.
Food Biophys. 2011 Jun 1;6(2):233-240. doi: 10.1007/s11483-010-9191-y.
Molecular dynamics simulations of water confined in two hydrophilic cylindrical pores-PH and PL-that differ in their silanol surface concentration (7.6 and 3.0 nm(-2), respectively) have been performed at 300 K. A strong interaction of interfacial water molecules with the pore was systematically found and gives rise to a layering effect, a significant distortion of both the hydrogen bond network (HBN) and the tetrahedral structure of these water molecules, and a corresponding subdiffusive mean square displacement along the main axis of the pores. By contrast, water molecules in the inner part of both pores were found to behave similarly to bulk water. The HBN and the tetrahedral configuration of water were more gradually distorted in the PL pore given the larger heterogeneity and rugosity of the surface, and the number of water-pore hydrogen bonds did not scale linearly with the silanol surface concentration of the pores, in part because of the close proximity between silanols in the PH pore. With the PL pore, the dynamic slowing down of water was found consistent with the experiment, suggesting that it provides a better model for the cylindrical MCM-41 mesopores. The structural and dynamical properties of water vary little with the silica force field.
在300 K下对限制在两个硅醇表面浓度不同(分别为7.6和3.0 nm⁻²)的亲水性圆柱形孔(PH和PL)中的水进行了分子动力学模拟。系统地发现了界面水分子与孔之间的强相互作用,这导致了分层效应、氢键网络(HBN)和这些水分子的四面体结构的显著扭曲,以及沿孔主轴的相应亚扩散均方位移。相比之下,发现两个孔内部的水分子行为与 bulk 水相似。由于表面具有更大的不均匀性和粗糙度,PL孔中HBN和水的四面体构型的扭曲更为渐进,并且水-孔氢键的数量与孔的硅醇表面浓度不成线性比例,部分原因是PH孔中硅醇之间的距离很近。对于PL孔,发现水的动力学减慢与实验一致,这表明它为圆柱形MCM-41介孔提供了更好的模型。水的结构和动力学性质随二氧化硅力场的变化很小。