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首页> 外文期刊>International Journal of Nanotechnology >Nanostructured self-assembly materials formed by non-ionic urea amphiphiles
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Nanostructured self-assembly materials formed by non-ionic urea amphiphiles

机译:由非离子脲两亲物形成的纳米结构自组装材料

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摘要

Urea is an extremely versatile molecule that has been widely used for many years in a diverse range of applications. The physicochemical properties of urea have been well studied with respect to the role of hydrogen bonding in biological and chemical systems. Urea-based amphiphiles, in contrast, have received little attention with respect to physicochemical properties. Studies reported in the last few years have demonstrated that specific urea amphiphiles display interesting lyotropic liquid crystalline phase behaviour. These nanostructured self-assembly phases are potential candidates for a number of novel applications. In this work, we review the physicochemical properties of non-ionic urea-based amphiphiles, including those of the solid state, insoluble monolayers residing at the air-water interface, Langmuir-Blodgett films deposited on solid substrates and lyotropic liquid crystalline phases. In addition, we present new data that extends the characterisation of the solid state and lyotropic properties of isoprenoid branched urea surfactants.
机译:尿素是一种用途极为广泛的分子,已在多种应用中广泛使用了许多年。关于氢键在生物和化学系统中的作用,已经对尿素的物理化学性质进行了很好的研究。相反,基于尿素的两亲物在理化性质方面很少受到关注。最近几年报道的研究表明,特定的尿素两亲物表现出有趣的溶致液晶相行为。这些纳米结构的自组装相是许多新颖应用的潜在候选者。在这项工作中,我们审查了非离子脲基两亲物的理化性质,包括固态物,位于空气-水界面的不溶性单分子层,沉积在固体基质上的Langmuir-Blodgett膜以及溶致液晶相。此外,我们提出了新的数据,扩展了类异戊二烯支链脲表面活性剂的固态和溶致特性的表征。

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