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Vapor Pressure of Water Nanodroplets

机译:纳米水蒸气压

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摘要

Classical thermodynamics is assumed to be valid up to a certain length-scale, below which the discontinuous nature of matter becomes manifest. In particular, this must be the case for the description of the vapor pressure based on the Kelvin equation. However, the legitimacy of this equation in the nanoscopic regime can not be simply established, because the determination of the vapor pressure of very small droplets poses a challenge both for experiments and simulations. In this article we make use of a grand canonical screening approach recently proposed to compute the vapor pressures of finite systems from molecular dynamics simulations. This scheme is applied to water droplets, to show that the applicability of the Kelvin equation extends to unexpectedly small lengths, of only 1 nm, where the inhomogeneities in the density of matter occur within spatial lengths of the same order of magnitude as the size of the object. While in principle this appears to violate the main assumptions underlying thermodynamics, the density profiles reveal, however, that structures of this size are still homogeneous in the nanosecond time-scale. Only when the inhomogeneity in the density persists through the temporal average, as it is the case for clusters of 40 particles or less, do the macroscopic thermodynamics and the molecular descriptions depart from each other.
机译:假定经典热力学在一定长度范围内有效,在该长度范围内,物质的不连续性变得明显。特别地,对于基于开尔文方程的蒸气压的描述必须是这种情况。但是,不能简单地建立该方程在纳米范围内的合法性,因为确定非常小的液滴的蒸气压对实验和模拟都构成了挑战。在本文中,我们利用最近提出的一种经典的规范筛选方法,通过分子动力学模拟来计算有限系统的蒸气压。此方案应用于水滴,以表明开尔文方程的适用范围扩展到出乎意料的小长度,仅为1 nm,其中物质密度的不均匀性发生在与L大小相同数量级的空间长度内物体。虽然原则上这似乎违反了热力学的主要假设,但密度分布图显示,这种大小的结构在纳秒级时域仍是均匀的。只有当密度的不均匀性在整个时间平均值上持续存在时(如40个或更少的粒子簇的情况),宏观热力学和分子描述才会相互偏离。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2014年第12期|4508-4514|共7页
  • 作者单位

    Departamento de Quimica Inorganica, Analitica y Quimica Fisica/INQUIMAE, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Ciudad Universitaria, Pab. Ⅱ, Buenos Aires, C1428EHA Argentina;

    Department of Chemistry, The University of Utah, 315 South 1400 East, Salt Lake City, Utah 84112-0850, United States;

    Departamento de Quimica Inorganica, Analitica y Quimica Fisica/INQUIMAE, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Ciudad Universitaria, Pab. Ⅱ, Buenos Aires, C1428EHA Argentina;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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