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Electronic characterization of silicon intercalated chevron graphene nanoribbons on Au(111).

Author
Abstract
:

Electronic and thermal properties of chevron-type graphene nanoribbons can be widely tuned, making them interesting candidates for electronic and thermoelectric applications. Here, we use post-growth silicon intercalation to unambiguously access nanoribbons' energy position of their electronic frontier states. These are otherwise obscured by substrate effects when investigated directly on the growth substrate. In agreement with first-principles calculations we find a band gap of 2.4 eV.

Year of Publication
:
2018
Journal
:
Chemical communications (Cambridge, England)
Date Published
:
2018
ISSN Number
:
1359-7345
DOI
:
10.1039/c7cc08353j
Short Title
:
Chem Commun (Camb)
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