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Surface chemistry effects on heterogeneous clathrate hydrate nucleation: A molecular dynamics study

机译:表面化学作用对异质包合物水合物成核的影响:分子动力学研究

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We report results from a molecular dynamics study of clathrate hydrate nucleation near model hydrophilic and hydrophobic surfaces. -CH3 and -OH terminated self-assembled monolayers (SAMs) are used as model surfaces. We study the nucleation of a soluble, structure II forming guest molecule with a coarsegrained model compatible with monatomic water. Despite the presence of SAMs, we show that nucleation occurs through a homogeneous mechanism in OHSAM and CH(3)SAM systems. Formation of ice-like or intermediate water structure is not observed near either surface prior to nucleation. Nucleation occurs more quickly in OHSAM systems than CH(3)SAM systems. However, the faster nucleation is driven by a partitioning of guest molecules which results in higher bulk guest concentration in OHSAM systems compared with CH(3)SAM systems. Despite significant aggregation of guest molecules near CH(3)SAM, no nucleation is observed near the surface. The formation of guest contact pairs, facilitated by the presence of CH(3)SAM, may prevent nucleation in this region. Our results highlight the numerous routes by which surfaces can affect hydrate nucleation due to the multicomponent nature of the phenomena. (C) 2017 Elsevier Ltd.
机译:我们报告了在型亲水和疏水表面附近的Clathrate水合物成核的分子动力学研究结果。 -CH3和终止的自组装单层(SAMS)用作模型表面。我们研究了用与原酸型水相容的粗糙模型形成溶于结构II的溶解的结构II的成核。尽管存在SAMS,我们表明核心通过OHSAM和CH(3)SAM系统的均匀机制发生。在成核之前,未在任何表面附近观察到冰状或中间水结构。在OHSAM系统中比CH(3)SAM系统更快地发生成核。然而,与客体分子的分区驱动的速度更快,这导致OHSAM系统中的较高批量客观浓度与CH(3)SAM系统相比。尽管在CH(3)SAM附近的客体分子进行了大量聚集,但在表面附近没有观察到成核。通过CH(3)SAM的存在促进的客座联系人对,可以防止该地区的成核。我们的结果突出了由于现象的多组分性质,曲线可以影响水合物成核的众多路线。 (c)2017年elestvier有限公司

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