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Effect Of The Spacer Group On The Behavior Of The Cationic Gemini Surfactant Monolayer At The Air/water Interface

机译:间隔基团对阳离子双子表面活性剂单层在空气/水界面处行为的影响

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Surface properties of the insoluble cationic bis-(quaternary ammonium halide) surfactants (Gemini) with polymethylene spacer at the air/water interface were investigated. The monolayers were transferred onto mica by the Langmuir-Blodgett (LB) technique and the corresponding LB films were characterized by the atomic force microscopy (AFM) and the contact angle of water. For the Gemini surfactants with the different spacer length, it was found that the surface pressure-molecular area isotherms resemble to each other. The limiting area increases rapidly and almost linearly with the increase of spacer length for the short spacers, but reaches a maximum at s = 10 and decreases slightly at s > 10. The AFM images show that the surface micelles and the multilayer aggregates gradually appear with the increase of surface pressure. No matter what the surface pressures are, the main structure of the monolayer almost keeps the same, which suggested that the major molecules lie nearly flat on the water surface, while the increase of surface pressure forces the minor alkyl chains to turn only partly or completely vertical to the water surface and even to overturn. This is the cause that the contact angle of water on LB film increases slightly with the surface pressure.
机译:研究了在空气/水界面处带有聚亚甲基间隔基的不溶性阳离子双(季铵卤化物)表面活性剂(Gemini)的表面性能。通过Langmuir-Blodgett(LB)技术将单层膜转移到云母上,并通过原子力显微镜(AFM)和水的接触角对相应的LB膜进行表征。对于具有不同间隔物长度的Gemini表面活性剂,发现表面压力-分子面积等温线彼此相似。短间隔子的极限面积随着间隔子长度的增加而迅速增加,并且几乎呈线性增长,但在s = 10时达到最大值,在s> 10时逐渐减小。AFM图像显示表面胶束和多层聚集体逐渐出现。表面压力的增加。无论表面压力如何,单层的主要结构几乎保持不变,这表明主要分子几乎位于水面上,而表面压力的增加迫使次要烷基链仅部分或全部转向垂直于水面,甚至翻倒。这是由于水在LB膜上的接触角随表面压力而略微增加的原因。

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