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掺杂剂对石墨烯渗透性的影响。

Influence of dopants on the impermeability of graphene.

机构信息

Department of Physics and Astronomy, Clemson University, Clemson, South Carolina 29634, USA.

出版信息

Nanoscale. 2017 May 11;9(18):6145-6150. doi: 10.1039/c7nr00949f.

Abstract

Graphene has attracted much attention as an impermeable membrane and a protective coating against oxidation. While many theoretical studies have shown that defect-free graphene is impermeable, in reality graphene inevitably has defects in the form of grain boundaries and vacancies. Here, we study the effects of N-dopants on the impermeability of few-layered graphene (FLG) grown on copper using chemical vapor deposition. The grain boundaries in FLG have minimal impact on their permeability to oxygen as they do not provide a continuous channel for gas transport due to high tortuosity. However, we experimentally show that the N-dopants in FLG display multiple configurations that create structural imperfections to selectively allow gas molecules to permeate. We used a comprehensive array of tools including Raman spectroscopy, X-ray photoelectron spectroscopy, optically stimulated electron emission measurements, and density functional theory of N-doped graphene on copper to elucidate the effects of dopant configuration on the impermeability of graphene. Our results clearly show that oxygen can permeate through graphene with non-graphitic nitrogen dopants that create pores in graphene and oxidize the underlying Cu substrate while graphitic nitrogen dopants do not show any changes compared to the pristine form. Furthermore, we observed that the work function of graphene can be tuned effectively by changing the dopant configuration.

摘要

石墨烯作为一种不可渗透的膜和防止氧化的保护层引起了广泛关注。虽然许多理论研究表明,无缺陷的石墨烯是不可渗透的,但在现实中,石墨烯不可避免地会以晶界和空位的形式存在缺陷。在这里,我们研究了使用化学气相沉积在铜上生长的少层石墨烯(FLG)中 N 掺杂剂对其渗透性的影响。由于高曲折度,FLG 中的晶界对其氧气渗透性的影响最小,因为它们不能为气体传输提供连续的通道。然而,我们实验表明,FLG 中的 N 掺杂剂表现出多种配置,这些配置会产生结构缺陷,从而选择性地允许气体分子渗透。我们使用了一系列综合工具,包括拉曼光谱、X 射线光电子能谱、光刺激电子发射测量和铜上掺杂石墨烯的密度泛函理论,以阐明掺杂剂配置对石墨烯渗透性的影响。我们的结果清楚地表明,氧气可以通过在石墨烯中形成孔并氧化底层 Cu 衬底的非石墨氮掺杂剂渗透通过石墨烯,而石墨氮掺杂剂与原始形式相比没有任何变化。此外,我们观察到通过改变掺杂剂的配置可以有效地调节石墨烯的功函数。

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