论文标题
部分可观测时空混沌系统的无模型预测
Does twist angle affect the properties of water confined inside twisted bilayer graphene?
论文作者
论文摘要
石墨烯纳米斜孔用于纳米流体设备,例如水脱盐,离子选择通道,离子晶体管,感应,分子筛分,蓝色能量收获和蛋白质测序。准备纳米流体设备是一项艰巨的任务,因为较小的未对准会导致设备的各种特性发生重大变化。在这里,我们专注于两个平行石墨烯片之间的旋转错位。使用分子动力学模拟,我们探测了限制在石墨烯纳米渠道内部的单层水的结构和动力学,以进行一系列相称的扭曲角度。使用SPC/E和TIP4P/2005水模型,我们的模拟显示了SPC/E和$(N \ sim 11.5 nm^{-2} $ tip4p/2005)的平衡数密度$ $(N \ SIM \ SIM 13 nm^{ - 2})$的独立性。基于水模型的各个密度,结构和介电常数是扭曲角的不变性。在此限制的水结构仅显示SPC/E水的方形冰订购。 TIP4P/2005显示在关键密度$(n \ sim 12.5 nm^{ - 2})$附近的订购。被限制水的平均垂直介电常数仍然异常低(SPC/e的$ \ sim 2 $,tip4p/2005的$ \ sim 6 $)用于研究的扭曲角度。我们发现,限制水分子的摩擦系数因小扭曲角而变化,而独立的曲折则以$ 5.1^{o} $而变得独立。我们的结果表明,小角度的未对准不会损害石墨烯缝孔内单层水的介电特性,但会显着影响其动力学。
Graphene nanoslit pore is used for nanofluidic devices like water desalination, ion-selective channels, ionic transistors, sensing, molecular sieving, blue energy harvesting, and protein sequencing. It is a strenuous task to prepare nanofluidic devices because a small misalignment leads to a significant alteration in various properties of the devices. Here we focus on the rotational misalignment between two parallel graphene sheets. Using molecular dynamics simulation, we probe the structure and dynamics of monolayer water confined inside graphene nanochannels for a range of commensurate twist angles. With SPC/E and TIP4P/2005 water model, our simulations reveal the independence of equilibrium number density $(n \sim 13 nm^{-2})$ for SPC/E and $(n \sim 11.5 nm^{-2})$ for TIP4P/2005) across twists. Based on the respective densities of water models, the structure and dielectric constant are invariant of twist angles. The confined water structure at this shows square ice ordering for SPC/E water only. TIP4P/2005 shows ordering at the vicinity of a critical density $(n \sim 12.5 nm^{-2})$. The average perpendicular dielectric constant of the confined water remains anomalously low ($\sim 2$ for SPC/E and $\sim 6$ for TIP4P/2005) for studied twist angles. We find that the friction coefficient of confined water molecules varies for small twist angles while becoming independent for twists greater than $5.1^{o}$. Our results indicate that small angular misalignment will not impair the dielectric properties of monolayer water within graphene slit-pore but can significantly influence its dynamics.