论文标题
石墨烯氧化石墨烯的机械性能:官能团的影响
Mechanical properties of graphene oxide: the impact of functional groups
论文作者
论文摘要
在当前的研究中,通过分子动力学模拟系统地研究了石墨烯(GO)作为有前途的石墨烯替代品的机械特性。为此,考虑了几个具有不同浓度的环氧和羟基官能团的GO样品。结果表明,增加环氧化物覆盖范围会导致GO系统的机械特征明显恶化。这种变化与增加环氧化物覆盖范围时在结构中的涟漪形成的增加相关。此外,研究系统中的键长,得出的结论是,较高的环氧化物百分比会导致单个和杂化谐振键的长度增加,从而导致GO样品机械性能的总体恶化。此外,我们的结果表明,高浓度的官能团可以导致负泊松比。增加羟基量对年轻模量的影响相同。在包含环氧化物和羟基的石墨烯系统中,推断出较高比例的前者可能导致较高的残留应变,因为系统内部形成了更多的波纹。
In the current study, mechanical characteristics of graphene oxide (GO) as a promising substitute of graphene are systematically studied through molecular dynamics simulation. For this purpose, several GO samples having different concentrations of epoxide and hydroxyl functional groups are considered. The results reveal that increasing the epoxide coverage causes a noticeable deterioration in the mechanical characteristics of GO systems. This change is correlated with the increase of the formation of ripples in the structure upon increasing the epoxide coverage. Moreover, investigating the bond lengths in the system, it is concluded that the higher epoxide percentage leads to an increase in the length of single and hybrid resonance bonds leading to an overall deterioration of the mechanical properties of GO samples. Additionally, our results demonstrate that high concentration of functional groups can lead to a negative Poisson ratio. Increasing the amount of hydroxyl groups shows the same declining effect on the Young modulus. In a graphene system containing both epoxide and hydroxyl groups, it is deduced that a higher percentage of the former can result in a higher residual strain because of the formation of more ripples within the system.