首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Tuning the Surface Activity of Gemini Amphiphile by the Host-Guest Interaction of Cucurbit[7]uril
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Tuning the Surface Activity of Gemini Amphiphile by the Host-Guest Interaction of Cucurbit[7]uril

机译:通过葫芦科植物的客-主相互作用调节双亲性两亲物的表面活性[7] uril

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摘要

This research is aimed to develop an effective supramolecular route for tuning the surface activity of the surfactant. To this end, cationic gemini amphiphiles and cucurbit[7]uril (CB[7]) were complexed in water, and each hydrophobic chain of the gemini amphiphiles was bound with a CB[7]. The steric hindrance of CB[7] prevented the two hydrophobic chains from getting closed to each other, leading a significant change of surface activity. Before supramolecular complexation, the surface activity of the gemini amphiphile is relatively high, which can generate the foams easily. However, the foam generated by gemini amphiphile can be destructed by adding CB[7], suggesting that the suface activity is lowed after the supramolecular complexation. The surface activity can recover after adding 1-adamantanamine hydrochloride, which has a stronger ability to bind CB[7]. Therefore, a controllable foaming and defoaming process can be realized. It is highly anticipated that supramolecular chemistry for tuning amphiphilicity of surfactants may find application in the fields that fast foaming and defoaming are needed.
机译:这项研究旨在开发一种有效的超分子途径来调节表面活性剂的表面活性。为此,阳离子双子座两亲物和葫芦[7]尿素(CB [7])在水中络合,双子座两亲物的每条疏水链都与CB结合[7]。 CB [7]的空间位阻阻止了两个疏水链彼此靠近,从而导致表面活性的显着变化。在超分子络合之前,双亲双亲物的表面活性较高,可以很容易地产生泡沫。然而,通过添加CB可以破坏双子座两亲物产生的泡沫[7],这表明超分子络合后表面活性降低。加入1-金刚烷胺盐酸盐后,表面活性可以恢复,该盐具有更强的结合CB的能力[7]。因此,可以实现可控的发泡和消泡过程。高度期望的是,用于调节表面活性剂两亲性的超分子化学可以在需要快速起泡和消泡的领域中找到应用。

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