石墨烯
超导电性
石墨
插层(化学)
凝聚态物理
材料科学
超晶格
石墨层间化合物
单层
声子
双层石墨烯
联轴节(管道)
石墨烯纳米带
带隙
化学物理
纳米技术
化学
物理
无机化学
复合材料
冶金
作者
Shuolong Yang,Jonathan A. Sobota,Christopher A. Howard,Christopher Pickard,Makoto Hashimoto,Dong-Hui Lu,Sung‐Kwan Mo,P. S. Kirchmann,Zhi‐Xun Shen
摘要
Abstract There is a great deal of fundamental and practical interest in the possibility of inducing superconductivity in a monolayer of graphene. But while bulk graphite can be made to superconduct when certain metal atoms are intercalated between its graphene sheets, the same has not been achieved in a single layer. Moreover, there is a considerable debate about the precise mechanism of superconductivity in intercalated graphite. Here we report angle-resolved photoelectron spectroscopy measurements of the superconducting graphite intercalation compound CaC 6 that distinctly resolve both its intercalant-derived interlayer band and its graphene-derived π* band. Our results indicate the opening of a superconducting gap in the π* band and reveal a substantial contribution to the total electron–phonon-coupling strength from the π*-interlayer interband interaction. Combined with theoretical predictions, these results provide a complete account for the superconducting mechanism in graphite intercalation compounds and lend support to the idea of realizing superconducting graphene by creating an adatom superlattice.
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