Indiana University Cyclotron Facility, Bloomington, IN 47408-1398, USA.
Phys Chem Chem Phys. 2011 Apr 7;13(13):6022-8. doi: 10.1039/c0cp02479a. Epub 2011 Feb 21.
Deep Inelastic Neutron Scattering measurements of water confined in mesoporous silica have been carried out. The experiment has been performed at room temperature on dry and on hydrated samples in order to investigate the interaction between the protons and the silanol groups of the confining surface. With this aim we could control the hydration of the pores in such a way as to adsorb 3.0 water molecules per nm(2), corresponding to a 1 to 1 ratio with the silanol groups of the surface. DINS measurements directly measure the mean kinetic energy and the momentum distribution of the protons. A detailed analysis of the hydrated sample has been performed in order to separate the contributions of the protons in the system, allowing us to determine the arrangement of water molecules on the silanol groups. We find that the hydrogen bond of the water proton with the oxygen of the silanol group is much stronger than the hydrogen bonds of bulk water.
已经对介孔二氧化硅中受限水进行了深度非弹性中子散射测量。该实验在室温下对干燥和水合样品进行了测量,以研究质子与限制表面的硅醇基团之间的相互作用。为此,我们可以控制孔的水合作用,以便吸附每 nm(2) 3.0 个水分子,与表面的硅醇基团的比例为 1:1。DINS 测量直接测量质子的平均动能和动量分布。对水合样品进行了详细分析,以分离系统中质子的贡献,使我们能够确定水分子在硅醇基团上的排列。我们发现,与体相水中的氢键相比,水分子中质子与硅醇基团中氧的氢键要强得多。