首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Parametric studies of interaction strengths in polymer/CO2 systems: Discontinuous molecular dynamics Simulations
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Parametric studies of interaction strengths in polymer/CO2 systems: Discontinuous molecular dynamics Simulations

机译:聚合物/ CO2系统中相互作用强度的参数研究:不连续分子动力学模拟

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Discontinuous molecular dynamics simulations are performed on homopolymer/solvent and surfactant/ solvent systems. The homopolymer and surfactant molecules are modeled as freely jointed square-well chains. Solvent molecules are modeled as both hard spheres and square-well spheres. We explore how the various interaction parameters affect the types of phase behavior and micellization observed in the homopolymer/solvent and surfactant/solvent systems. Increasing the packing fraction of homopolymers in both hard-sphere solvents and square-well solvents increases the solvent's ability to dissolve homopolymers only when the segment-solvent interaction strength exceeds a critical value. Although only upper critical solution temperature (UCST) behavior is observed for homopolymers in hard-sphere solvents, both UCST and lower critical solution temperature (LCST) behavior are observed for homopolymers in square-well solvents, depending upon the interaction strengths and chain length. This indicates that it is necessary to account for the solvent-solvent attraction to model LCST behavior in supercritical CO2. Our simulation results on surfactants in hard-sphere solvents show that it is necessary to account for the interactions experienced by both the head and tail blocks in order to capture the essential features of surfactant/ supercritical CO2 systems.
机译:在均聚物/溶剂和表面活性剂/溶剂系统上进行了不连续的分子动力学模拟。均聚物和表面活性剂分子被建模为自由连接的方孔链。溶剂分子被建模为硬球和方阱球。我们探索了各种相互作用参数如何影响均聚物/溶剂和表面活性剂/溶剂系统中观察到的相行为和胶束化的类型。仅当链段与溶剂的相互作用强度超过临界值时,增加均聚物在硬球溶剂和方孔溶剂中的填充率才提高了溶剂溶解均聚物的能力。尽管在硬球溶剂中均聚物仅观察到较高的临界溶液温度(UCST)行为,但在方形孔溶剂中均观察到均聚物的UCST和较低临界溶液温度(LCST)行为,这取决于相互作用强度和链长。这表明有必要考虑溶剂-溶剂的吸引力以模拟超临界CO2中的LCST行为。我们对硬球溶剂中表面活性剂的模拟结果表明,有必要考虑头部和尾部嵌段所经历的相互作用,以捕获表面活性剂/超临界CO2系统的基本特征。

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