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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Probing the Structure of Water Molecules at an Oil/Water Interface in the Presence of a Charged Soluble Surfactant through Isotopic Dilution Studies
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Probing the Structure of Water Molecules at an Oil/Water Interface in the Presence of a Charged Soluble Surfactant through Isotopic Dilution Studies

机译:通过同位素稀释研究探测带电可溶性表面活性剂存在下油/水界面处的水分子结构

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We have employed vibrational sum frequency generation (VSFG) to obtain the first vibrational spectra of water molecules at an oil/water interface in the presence of a charged, soluble surfactant. By examining OH stretching modes that are highly sensitive to the local hydrogen-bonding environment, we have been able to compare the structure of interfacial water molecules with the structure of bulk water molecules determined from previous studies. From the VSFG spectra we infer that there is more extensive hydrogen bonding between neighboring water molecules at the CCl↓(4)/water interface as compared to water molecules in the bulk aqueous phase. The presence of a charged surfactant enhances the SF response in the OH stretching spectral region in a manner similar to what we have previously observed at the air/water interface. To further probe the hydrogen bonding of water molecules at the oil/water interface, we have employed VSFG to study mixed samples of H↓(2)0 and D20. As the mole fraction of H20 is decreased, the peak position of the ice-like OH stretching mode is blue-shifted by approximately 120 cm↑(-1) and converges on the peak position of the uncoupled OH symmetric stretch observed in bulk ice studies. This shift in energy is discussed within the context of hydrogen bonding of the interfacial H↓(2)O and D20 molecules and the intermolecular uncoupling of the OH symmetric stretching vibration. Finally, we have obtained the first vibrational spectra of the OH stretching mode from uncoupled HOD molecules at the oil/water interface located at approximately 3460 cm↑(-1).
机译:在带电的可溶性表面活性剂的存在下,我们采用振动和频率生成(VSFG)来获得油/水界面处水分子的第一振动光谱。通过检查对局部氢键环境高度敏感的OH拉伸模式,我们已经能够将界面水分子的结构与先前研究确定的本体水分子的结构进行比较。从VSFG谱图可以推断,与本体水相中的水分子相比,CCl↓(4)/水界面处相邻水分子之间存在更广泛的氢键。带电表面活性剂的存在以类似于我们先前在空气/水界面处观察到的方式增强了OH拉伸光谱区域中的SF反应。为了进一步探测油/水界面处水分子的氢键,我们使用了VSFG来研究H↓(2)0和D20的混合样品。随着H20摩尔分数的降低,冰状OH拉伸模式的峰值位置蓝移约120 cm↑(-1),并收敛于散装冰研究中观察到的未耦合OH对称拉伸的峰值位置。 。在界面H↓(2)O和D20分子的氢键结合以及OH对称拉伸振动的分子间解偶联的背景下讨论了这种能量转移。最后,我们从位于约3460 cm↑(-1)的油/水界面处的未耦合HOD分子获得了OH拉伸模式的第一振动光谱。

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