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August 23, 2021Physical Review Materials27 citations

Electronic structure of a borophene layer in rare-earth aluminum/chromium boride and its hydrogenated derivative borophane

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MNMasahito NiibeMCMathis CameauNCNguyen Thanh Cuong

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Abstract

We studied electronic states of borophene in a crystal of rare-earth aluminum/chromium boride and the hydrogenated sheet, borophane, successfully prepared by ion exchange and liquid exfoliation of the crystal. The layer has a boron network with five-membered and seven-membered rings. Electronic structures of all the boron-derived layers are found to be gapless by soft x-ray absorption and emission spectroscopy measurements at the B K-shell absorption edge and density functional theory calculations. The present results support the existence of a Dirac nodal loop at the Fermi level in the borophane layer with five- and seven-membered rings, predicted recently by topological calculations.

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Niibe et al. (2021) studied this question.

synapsesocial.com/papers/69fff356831589f3542db2dehttps://doi.org/10.1103/physrevmaterials.5.084007
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