首页> 外文期刊>Journal of CO2 Utilization >The self-assembly and microscopic interfacial properties of a supercritical CO2 microemulsion having hydrotropes: Atom-level observation from molecular dynamics simulation
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The self-assembly and microscopic interfacial properties of a supercritical CO2 microemulsion having hydrotropes: Atom-level observation from molecular dynamics simulation

机译:具有水辐射的超临界CO2微乳液的自组装和微观界面性质:分子动力学模拟的原子水平观察

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摘要

Supercritical carbon dioxide microemulsion is a complex fluid mixture with distinct nano-scale microstructure that can be tailored to synthesize nano-particles and conduct interfacial reactions, which generally forms under high pressure. Reducing the pressure needed is significantly valuable for promoting the accessibility of the scCO(2) microemulsion technology and further spurring the development of CO2-based green chemistry or chemical process. In this paper, we provide the direct evidence for the formation of 4FG(EO)(2) based water in scCO(2) microemulsion and study the microscopic mechanism of the positive synergistic effect of a series of sodium palkyl benzoate (hydrotrope) using molecular dynamics simulation method. Results show that the three additives can be effectively solubilized into the microemulsion aggregate and mainly distribute at the water-CO2 interface. Conformational analysis shows that sodium benzoate (BAO) stands at the interface with a relatively perpendicular conformation, while sodium p-ethyl benzoate (BA2) and sodium p-octyl benzoate (BA8) tend to lie on the interface by side. The packing of the surfactant molecules and interaction energy within the interfacial region are examined to reveal the specific microscopic origin of the positive synergistic effect between different hydrotropes and the surfactant in the sense of contributing to the stability of the aggregate, which is favorable for lowering the pressure needed to construct scCO(2) microemulsion. This work is expected to direct the better design of the surfactant and rational choice of additives to successfully construct scCO(2) microemulsion under lower pressure or even surfactant-free scCO(2) microemulsion, which facilitates the application of scCO(2) meeting industrial requirements.
机译:超临界二氧化碳微乳液是具有不同纳米级微结构的复杂流体混合物,其可以定制以合成纳米粒子并进行界面反应,这通常在高压下形成。降低所需的压力对于促进SCCO(2)微乳液技术的可访问性并进一步促进基于CO2的绿色化学或化学过程的开发的显着有价值。在本文中,我们提供了在SCCO(2)微乳液中形成的4FG(EO)(2)水的直接证据,并使用分子研究一系列帕膦酸钠(水路)的阳性协同效应的微观机理动力学仿真方法。结果表明,三种添加剂可以有效地溶解在微乳液聚集体中,主要分布在水 - CO2界面。构象分析表明,苯甲酸钠(BaO)在具有相对垂直构象的界面处矗立,而苯甲酸钠(Ba2)和苯甲酸钠(Ba8)倾向于旁边的界面。检查表面活性剂分子的包装和界面区域内的相互作用能量,以揭示不同水辐射和表面活性剂之间的阳性协同效应的特异性微观起源,这在累积骨料的稳定性的意义上,这有利于降低构建SCCO(2)微乳液所需的压力。这项工作预计将引导更好地设计表面活性剂和合理选择添加剂,以在较低压力下成功构建SCCO(2)微乳液,甚至无表面活性剂的SCCO(2)微乳液,这有助于SCCO(2)会议的应用要求。

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