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首页> 外文期刊>The Journal of Chemical Physics >Comparison of several classical density functional theories for the adsorption of flexible chain molecules into cylindrical nanopores
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Comparison of several classical density functional theories for the adsorption of flexible chain molecules into cylindrical nanopores

机译:几种经典的密度泛函理论对柔性链分子吸附到圆柱纳米孔中的比较

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Adsorption of flexible oligomers into narrow cylindrical pores has been studied by means of several versions of classical density functional theory (CDFT) and Monte Carlo simulation. The adsorption process is interesting to study due to the competition between the entropic depletion of oligomers from the pores and the wall–oligomer attraction. It is also challenging to describe using current CDFTs, which tend to overestimate the amount of the adsorbed fluid. From a comparison of several different CDFT approaches, we find that this is due to the assumption of ideal or freely jointed chain conformations.Moreover, it is demonstrated that it is impossible to obtain a reasonable description of the adsorption isotherms without taking into account accurate contact values in the distribution functions describing the structure of the reference monomer fluid. At low densities, more accurate result are obtained in comparison with Monte Carlo simulation data when accurate contact values are incorporated into the theory rather than the more commonly used hard-sphere contact value. However, even the CDFT with accurate contact values still overestimates the amount of the adsorbed fluid due to the ideal or freely jointed chain approximation, used for the description of chain conformations in most CDFT approaches. We find that significant improvement can achieved by employing selfconsistent field theory, which samples self-avoiding chain conformations and decreases the number of possible chain conformations, and, consequently, the amount of the adsorbed fluid.
机译:通过几种经典的密度泛函理论(CDFT)和蒙特卡洛模拟研究了柔性低聚物在狭窄的圆柱孔中的吸附。由于孔隙中低聚物的熵耗与壁-低聚物的吸引之间存在竞争,因此对吸附过程的研究非常有趣。描述使用当前的CDFT也是一个挑战,因为CDFT往往高估了吸附流体的量。通过比较几种不同的CDFT方法,我们发现这是由于理想或自由连接的链构象的假设所致,此外,还证明了如果不考虑准确的接触就不可能获得对吸附等温线的合理描述。描述参考单体流体结构的分布函数中的数值。在低密度下,与精确的接触值合并到理论中的蒙特卡罗模拟数据相比,可以获得更准确的结果,而不是更常用的硬球接触值。然而,由于理想的或自由连接的链近似,甚至具有精确接触值的CDFT仍然高估了吸附流体的量,在大多数CDFT方法中,理想的或自由结合的链近似用于描述链构象。我们发现,通过采用自洽场理论可以实现重大改进,该理论对自逃避的链构象进行采样并减少可能的链构象的数量,从而减少了吸附流体的量。

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