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涨落诱导的相互作用强度的广泛分子输运调制。

Fluctuation-induced extensive molecular transport modulation of interaction strength.

作者信息

Eun Changsun

机构信息

Department of Chemistry, Hankuk University of Foreign Studies, Yongin 17035, Republic of Korea.

出版信息

Phys Chem Chem Phys. 2025 Feb 12;27(7):3634-3649. doi: 10.1039/d4cp03711a.

Abstract

In our previous work, we studied the thermodynamics of two cases of intercompartmental transport through a carbon nanotube: one involving water molecules and the other involving nonpolar molecules. Free energy calculations indicate that transporting water molecules from one compartment to another a narrow channel is impossible, whereas for nonpolar molecules, only approximately half can be transported. Therefore, the interaction strength between transported molecules significantly affects molecular transport. In this study, we examined the effect of interaction strength on molecular transport both kinetically and thermodynamically simple models and molecular simulation methods. The results revealed that, depending on the interaction strength, the transport behavior can be categorized into three regimes: water-like, nonpolar-like, and transition regimes. Interestingly, the molecular fluctuations in the transition regime are so large that a significant number of molecules are transported between the compartments in an oscillatory manner, exceeding the transport of half of the molecules in the nonpolar-like regime. Thus, to induce molecular transport driven by large fluctuations, the interaction strength should remain within a moderate range. Moreover, potential of mean force (PMF) analysis supports this large fluctuating behavior, as the PMF profile exhibits a flat region that allows significant variation with no free energy cost. We elucidate the role of interaction strength in molecular transport, as well as the deep connection between molecular fluctuations and molecular transport.

摘要

在我们之前的工作中,我们研究了通过碳纳米管进行的两种跨隔室传输情况的热力学:一种涉及水分子,另一种涉及非极性分子。自由能计算表明,将水分子从一个隔室通过狭窄通道传输到另一个隔室是不可能的,而对于非极性分子,只有大约一半能够被传输。因此,被传输分子之间的相互作用强度显著影响分子传输。在本研究中,我们通过简单模型和分子模拟方法从动力学和热力学两方面研究了相互作用强度对分子传输的影响。结果表明,根据相互作用强度,传输行为可分为三种模式:水状模式、非极性状模式和过渡模式。有趣的是,过渡模式下的分子涨落非常大,以至于大量分子以振荡方式在隔室之间传输,超过了非极性状模式下一半分子的传输量。因此,为了诱导由大涨落驱动的分子传输,相互作用强度应保持在适度范围内。此外,平均力势(PMF)分析支持这种大涨落行为,因为PMF曲线呈现出一个平坦区域,允许有显著变化且无需自由能代价。我们阐明了相互作用强度在分子传输中的作用,以及分子涨落与分子传输之间的深层联系。

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