Infrared spectroscopy of graphene nanoribbons and aromatic compounds with sp3C–H (methyl or methylene groups)
Author:
Funder
Kondo Memorial Foundation
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Link
https://link.springer.com/content/pdf/10.1007/s10853-021-06001-1.pdf
Reference61 articles.
1. Marmolejo JMT, Velasco JM (2016) Review on graphene nanoribbon devices for logic applications. Microelectronics J 48:18–38
2. Celis A, Nair MN, Taleb-Ibrahimi A, Conrad EH, Berger C, Heer WAd, Tejeda A (2016) Graphene nanoribbons: fabrication, properties and devices. J Phys D Appl Phys 49:143001
3. Johnson AP, Gangadharappa HV, Pramod K (2020) Graphene nanoribbons: A promising nanomaterial for biomedical applications. J Control Release 325:141–162
4. Terrones M, Botello MAR, Campos DJ, López UF, Vega CYI, Rodríguez MFJ, Elías AL, Muñoz SE, Cano MAG, Charlier JC, Terrones H (2010) Graphene and graphite nanoribbons: morphology, properties, synthesis, defects and applications. Nano Today 5:351–372
5. Chen YC, Oteyza DGd, Pedramrazi Z, Chen C, Fischer FR, Crommie MF (2013) Tuning the band gap of graphene nanoribbons synthesized from molecular precursors. ACS Nano 7:6123–6128
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