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基于第一性原理的和频产生光谱学揭示的水-石墨烯和水-六方氮化硼片界面的结构和动力学。

Structure and dynamics of water at water-graphene and water-hexagonal boron-nitride sheet interfaces revealed by ab initio sum-frequency generation spectroscopy.

机构信息

Graduate School of Engineering Science, Osaka University, 1-3 Machikaneyama, Toyonaka, Osaka, 560-8531, Japan.

出版信息

Phys Chem Chem Phys. 2018 May 9;20(18):12979-12985. doi: 10.1039/c8cp01351a.

Abstract

We simulate sum-frequency generation (SFG) spectra of isotopically diluted water at the water-graphene and water-hexagonal boron-nitride (hBN) sheet interfaces, using ab initio molecular dynamics simulations. A sharp 'dangling' O-D peak around ∼2640 cm-1 appearing in both simulated SFG spectra evidences that both graphene and hBN are hydrophobic. The dangling O-D peak is 10 cm-1 red-shifted at the water-hBN interface relative to the peak at the water-graphene interface. This frequency difference gives a stronger O-DN intermolecular interaction between water and hBN than the O-DC interaction between water and graphene. Accordingly, the anisotropy decay of such a dangling O-D group slows down near hBN compared with near graphene, illustrating that the dynamics of the dangling O-D group are also affected by the stronger O-DN interaction than the O-DC interaction. We discuss molecular-level insights into the structure and dynamics of interfacial water in the context of the friction of hBN and graphene.

摘要

我们使用从头算分子动力学模拟,模拟了水-石墨烯和水-六方氮化硼(hBN)片界面处的同位素稀释水的和频产生(SFG)谱。在两个模拟的 SFG 谱中都出现了约 2640cm-1 处尖锐的“悬垂”OD 峰,证明石墨烯和 hBN 都是疏水的。与在水-石墨烯界面处的峰相比,水-hBN 界面处的悬垂 OD 峰红移了 10cm-1。这种频率差异表明,在水和 hBN 之间的 O-DN 分子间相互作用比在水和石墨烯之间的 O-DC 相互作用更强。因此,与在石墨烯附近相比,在 hBN 附近,这种悬垂 OD 基团的各向异性衰减速度减慢,这表明悬垂 OD 基团的动力学也受到比 O-DC 相互作用更强的 O-DN 相互作用的影响。我们讨论了分子水平上对 hBN 和石墨烯摩擦中界面水的结构和动力学的理解。

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