Deuteration of C60 on a highly oriented pyrolytic graphite surface.

G Pantazidis, M Scheffler, F D S Simonsen, A Cassidy, P A Jensen, L Hornekær, J D Thrower
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Abstract

Reactions on carbonaceous surfaces play an important role in processes such as H2 formation in the interstellar medium. We have investigated the adsorption of C60 molecules on a highly oriented pyrolytic graphite (HOPG) surface and then exposed them to a beam of deuterium atoms in order to investigate the formation of deuterated fullerenes. Scanning tunneling microscopy (STM) was used to probe the adsorbed molecules and their deuteration. Deuteration of C60 films results in increased thermal stability of the film, relative to films of pristine C60, along with an evolution towards higher deuterated species. The STM data provide confirmatory evidence for the formation of deuterated fullerene species.

Abstract Image

高取向热解石墨表面的 C60 Deuteration。
碳质表面的反应在星际介质中形成 H2 等过程中发挥着重要作用。我们研究了 C60 分子在高取向热解石墨 (HOPG) 表面的吸附情况,然后将它们暴露在氘原子束中,以研究氘代富勒烯的形成。扫描隧道显微镜(STM)用于探测吸附的分子及其氚化情况。与原始 C60 薄膜相比,C60 薄膜的氚化会增加薄膜的热稳定性,并向更高氚化物演化。STM 数据为氘化富勒烯物种的形成提供了确凿证据。
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