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外延烯的稳定性与通用封装

Stability and universal encapsulation of epitaxial Xenes.

作者信息

Molle Alessandro, Faraone Gabriele, Lamperti Alessio, Chiappe Daniele, Cinquanta Eugenio, Martella Christian, Bonera Emiliano, Scalise Emilio, Grazianetti Carlo

机构信息

CNR-IMM, Unit of Agrate Brianza, Via C. Olivetti 2, 20864 Agrate Brianza, Italy.

出版信息

Faraday Discuss. 2021 Apr 1;227:171-183. doi: 10.1039/c9fd00121b. Epub 2020 Dec 9.

Abstract

In the realm of two-dimensional material frameworks, single-element graphene-like lattices, known as Xenes, pose several issues concerning their environmental stability, with implications for their use in technology transfer to a device layout. In this Discussion, we scrutinize the chemical reactivity of epitaxial silicene, taken as a case in point, in oxygen-rich environments. The oxidation of silicene is detailed by means of a photoemission spectroscopy study upon carefully dosing molecular oxygen under vacuum and subsequent exposure to ambient conditions, showing different chemical reactivity. We therefore propose a sequential AlO encapsulation of silicene as a solution to face degradation, proving its effectiveness by virtue of the interaction between silicene and a silver substrate. Based on this method, we generalize our encapsulation scheme to a large number of metal-supported Xenes by taking into account the case of epitaxial phosphorene-on-gold.

摘要

在二维材料框架领域,被称为“Xenes”的单元素类石墨烯晶格在环境稳定性方面存在若干问题,这对其技术转移到器件布局中的应用产生影响。在本讨论中,我们以外延硅烯为例,仔细研究其在富氧环境中的化学反应性。通过在真空下小心计量分子氧并随后暴露于环境条件下的光发射光谱研究,详细阐述了硅烯的氧化过程,结果表明其具有不同的化学反应性。因此,我们提出对硅烯进行顺序式AlO封装作为应对降解的解决方案,并通过硅烯与银衬底之间的相互作用证明了其有效性。基于此方法,我们通过考虑外延金上磷烯的情况,将我们的封装方案推广到大量金属支撑的Xenes。

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