首页> 外文期刊>The Journal of Chemical Physics >Heterogeneous seeded molecular dynamics as a tool to probe the ice nucleating ability of crystalline surfaces
【24h】

Heterogeneous seeded molecular dynamics as a tool to probe the ice nucleating ability of crystalline surfaces

机译:异质种子的分子动力学作为探测晶体表面的冰成核能力的工具

获取原文
获取原文并翻译 | 示例
           

摘要

Ice nucleation plays a significant role in a large number of natural and technological processes, but it is challenging to investigate experimentally because of the small time scales (ns) and short length scales (nm) involved. On the other hand, conventional molecular simulations struggle to cope with the relatively long time scale required for critical ice nuclei to form. One way to tackle this issue is to take advantage of free energy or path sampling techniques. Unfortunately, these are computationally costly. Seeded molecular dynamics is a much less demanding alternative that has been successfully applied already to study the homogeneous freezing of water. However, in the case of heterogeneous ice nucleation, nature's favourite route to form ice, an array of suitable interfaces between the ice seeds and the substrate of interest has to be built, and this is no trivial task. In this paper, we present a Heterogeneous SEEDing (HSEED) approach which harnesses a random structure search framework to tackle the ice-substrate challenge, thus enabling seeded molecular dynamics simulations of heterogeneous ice nucleation on crystalline surfaces. We validate the HSEED framework by investigating the nucleation of ice on (i) model crystalline surfaces, using the coarse-grained mW model, and (ii) cholesterol crystals, employing the fully atomistic TIP4P/ice water model. We show that the HSEED technique yields results in excellent agreement with both metadynamics and forward flux sampling simulations. Because of its computational efficiency, the HSEED method allows one to rapidly assess the ice nucleation ability of whole libraries of crystalline substrates-a long-awaited computational development in, e.g., atmospheric science. Published by AIP Publishing.
机译:冰核起到了一大批自然和技术过程的显著作用,但它是具有挑战性的实验研究,因为小时间尺度(NS),并参与短长度尺度(纳米)。在另一方面,常规的分子模拟难以应付与临界冰核以形成所需的相对长的时间尺度。解决这个问题的一个办法是采取自由能或路径采样技术优势。不幸的是,这些都是计算成本高。播种分子动力学是一个非常不那么苛刻的替代方案,已成功应用于已经研究水均匀冻结。然而,在异构冰核的情况下,自然的对形成冰,冰种子和所关注的基板具有待建之间的合适接口的阵列最喜爱的路线,这是不平凡的任务。在本文中,我们提出它利用一个随机结构搜索框架来解决冰基板的挑战,从而使上晶体表面异质冰核的晶种的动力学模拟的异构播种(HSEED)的方法。我们通过研究冰在(ⅰ)模型晶体表面成核,使用粗粒度毫瓦模型,及(ii)胆固醇结晶,采用充分原子论TIP4P /冰水模型验证HSEED框架。我们表明,HSEED技术产生的结果与两个metadynamics和转发流量采样的模拟非常吻合。因为它的计算效率的,该方法HSEED允许一个快速评价结晶基板-一个在期待已久的计算的发展,例如,大气科学的整个库的冰核的能力。通过AIP发布发布。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号