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首页> 外文期刊>The Journal of Chemical Physics >Density functional theory for copolymers confined in a nanoslit
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Density functional theory for copolymers confined in a nanoslit

机译:纳米狭缝中共聚物的密度泛函理论

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A density functional theory is developed for copolymers confined in a nanoslit on the basis of our previous work for homopolymers. The theory accurately captures the structural characteristics for diblock and alternating copolymers composed of hard-sphere or square-well segments. Satisfactory agreement is obtained between the theoretical predictions and simulation results in segment density profiles, segment fractions, and partition coefficients. Structures under confinement strongly depend on the substituent segment sizes for the hard-sphere copolymers and also on the segment-wall attractions for the square-well copolymers. Alternating copolymers are found to behave as homopolymers with effective segment size, and effective segment-segment and segment-wall interactions. (c) 2007 American Institute of Physics.
机译:在我们之前对均聚物的研究工作的基础上,针对封闭在纳米缝隙中的共聚物开发了密度泛函理论。该理论准确地捕获了由硬球或方孔链段组成的二嵌段和交替共聚物的结构特征。在段密度分布图,段分数和分配系数方面,理论预测与模拟结果之间取得了令人满意的一致性。受限制的结构在很大程度上取决于硬球共聚物的取代基链段尺寸,也取决于方孔共聚物的链段壁吸引力。发现交替共聚物表现为具有有效链段尺寸,有效链段-段和链段-壁相互作用的均聚物。 (c)2007年美国物理研究所。

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