Department of Chemistry, University of Scranton, Scranton, PA 18510, United States.
J Colloid Interface Sci. 2010 Jun 15;346(2):391-7. doi: 10.1016/j.jcis.2010.03.014. Epub 2010 Mar 12.
The water OH stretching band (3000-3600 cm(-1)) was analyzed for absorption contributions from the respective bulk and interfacial water regions of a reverse micelle. This analysis was performed by correlating volume changes of these regions to changes in the OH band absorption as the micelle radius grows. The volumetric analysis is based on the well established expanding core-shell model for AOT reverse micelles and yields the dimensions of the water regions and their individual spectral responses in the OH band. The interfacial shell thickness was determined to be 0.45 nm for AOT reverse micelles in i-octane. It was found that each water region absorbs at most frequencies in the OH band; however, absorption on the red side of the OH band is dominated by bulk water, while absorption on the blue side is dominated by interfacial water. The bulk spectral response was found to be more similar to pure water, while the interfacial spectrum is strongly blue-shifted reflecting the weaker hydrogen bonding in this region. AOT reverse micelles with radii in the range 2-4 nm conformed well to the volumetric model. However, it was found that determination of the bulk water spectral response is particularly sensitive to uncertainty in the micelle radius.
水 OH 伸缩带(3000-3600cm(-1))的吸收贡献来自反胶束的相应体相和界面水区域。通过将这些区域的体积变化与 OH 带吸收的变化相关联来进行这种分析,随着胶束半径的增大。体积分析基于 AOT 反胶束的成熟的扩展核壳模型,并得出水区域的尺寸及其在 OH 带中的各个光谱响应。界面壳层厚度确定为 i-辛烷中 AOT 反胶束的 0.45nm。发现每个水区域在 OH 带的最多频率处吸收;然而,OH 带的红侧吸收主要由体相水主导,而蓝侧吸收主要由界面水主导。体相光谱响应与纯水更相似,而界面光谱则强烈蓝移,反映了该区域较弱的氢键。半径在 2-4nm 范围内的 AOT 反胶束符合体积模型。然而,发现确定体相水光谱响应对胶束半径的不确定性特别敏感。