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首页> 外文期刊>ACS Central Science >Tunable Oleo-Furan Surfactants by Acylation of Renewable Furans
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Tunable Oleo-Furan Surfactants by Acylation of Renewable Furans

机译:通过可再生呋喃酰化可调谐Oleo-Furan表面活性剂

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An important advance in fluid surface control was the amphiphilic surfactant composed of coupled molecular structures (i.e., hydrophilic and hydrophobic) to reduce surface tension between two distinct fluid phases. However, implementation of simple surfactants has been hindered by the broad range of applications in water containing alkaline earth metals (i.e., hard water), which disrupt surfactant function and require extensive use of undesirable and expensive chelating additives. Here we show that sugar-derived furans can be linked with triglyceride-derived fatty acid chains via Friedel–Crafts acylation within single layer (SPP) zeolite catalysts. These alkylfuran surfactants independently suppress the effects of hard water while simultaneously permitting broad tunability of size, structure, and function, which can be optimized for superior capability for forming micelles and solubilizing in water.
机译:流体表面控制方面的重要进展是由两性分子结构(即亲水性和疏水性)组成的两亲性表面活性剂,可降低两种不同流体相之间的表面张力。但是,由于在含碱土金属的水(即硬水)中的广泛应用阻碍了简单表面活性剂的实施,这破坏了表面活性剂的功能并需要大量使用不希望的和昂贵的螯合添加剂。在这里,我们表明,糖的呋喃可以通过单层(SPP)沸石催化剂中的Friedel-Crafts酰化作用与甘油三酸酯衍生的脂肪酸链连接。这些烷基呋喃表面活性剂可独立抑制硬水的作用,同时可实现尺寸,结构和功能的广泛可调性,可对其进行优化,以形成胶束并溶于水。

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