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水纳米液滴与石墨烯和单层硼氮片接触的润湿和界面性质。

Wetting and interfacial properties of water nanodroplets in contact with graphene and monolayer boron-nitride sheets.

机构信息

Department of Chemistry and Nebraska Center for Materials and Nanoscience, University of Nebraska, Lincoln, Nebraska 68588, USA.

出版信息

ACS Nano. 2012 Mar 27;6(3):2401-9. doi: 10.1021/nn204661d. Epub 2012 Feb 22.

Abstract

Born-Oppenheim quantum molecular dynamics (QMD) simulations are performed to investigate wetting, diffusive, and interfacial properties of water nanodroplets in contact with a graphene sheet or a monolayer boron-nitride (BN) sheet. Contact angles of the water nanodroplets on the two sheets are computed for the first time using QMD simulations. Structural and dynamic properties of the water droplets near the graphene or BN sheet are also studied to gain insights into the interfacial interaction between the water droplet and the substrate. QMD simulation results are compared with those from previous classic MD simulations and with the experimental measurements. The QMD simulations show that the graphene sheet yields a contact angle of 87°, while the monolayer BN sheet gives rise to a contact angle of 86°. Hence, like graphene, the monolayer BN sheet is also weakly hydrophobic, even though the BN bonds entail a large local dipole moment. QMD simulations also show that the interfacial water can induce net positive charges on the contacting surface of the graphene and monolayer BN sheets, and such charge induction may affect electronic structure of the contacting graphene in view that graphene is a semimetal. Contact angles of nanodroplets of water in a supercooled state on the graphene are also computed. It is found that under the supercooled condition, water nanodroplets exhibit an appreciably larger contact angle than under the ambient condition.

摘要

采用 Born-Oppenheim 量子分子动力学(QMD)模拟方法研究了与石墨烯片或单层硼氮(BN)片接触的水纳米液滴的润湿、扩散和界面特性。首次使用 QMD 模拟计算了水纳米液滴在两个基底上的接触角。还研究了靠近石墨烯或 BN 基底的水滴的结构和动力学性质,以深入了解液滴与基底之间的界面相互作用。将 QMD 模拟结果与以前的经典 MD 模拟结果和实验测量结果进行了比较。QMD 模拟结果表明,石墨烯片的接触角为 87°,而单层 BN 片的接触角为 86°。因此,与石墨烯类似,单层 BN 片也是弱疏水性的,尽管 BN 键具有较大的局部偶极矩。QMD 模拟还表明,界面水可以在石墨烯和单层 BN 片的接触表面上诱导净正电荷,这种电荷诱导可能会影响接触石墨烯的电子结构,因为石墨烯是一种半金属。还计算了在石墨烯上过冷状态下水纳米液滴的接触角。结果发现,在过冷条件下,水纳米液滴的接触角比环境条件下大得多。

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