Impact of covalent functionalization by diazonium chemistry on the electronic properties of graphene on SiC
Author(s) -
Gina Ambrosio,
Anton Brown,
Lakshya Daukiya,
Giovanni Drera,
Giovanni Di Santo,
L. Petaccia,
Steven De Feyter,
L. Sangaletti,
Stefania Pagliara
Publication year - 2020
Publication title -
nanoscale
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.038
H-Index - 224
eISSN - 2040-3372
pISSN - 2040-3364
DOI - 10.1039/d0nr01186j
Subject(s) - graphene , surface modification , covalent bond , chemistry , nanotechnology , materials science , polymer chemistry , combinatorial chemistry , organic chemistry
Plenty of strategies focused on covalent interaction have been developed to functionalize graphene's surface in order to employ it in a wide range of applications. Among them, the use of radical species including nitrene, carbene and aryl diazonium salts is regarded as a promising strategy to establish the covalent functionalization of graphene. In this work, we highlight the effect of diazonium chemistry on the electronic properties of graphene on SiC. On the basis of X-ray and synchrotron-based photoemission experiments, we were able to prove that 3,4,5-trimethoxybenzenediazonium (TMeOD) units, reduced and chemisorbed onto graphene using electrochemistry, preserve the electronic structure of the Dirac cone, through inducing a slightly additional n-type doping of graphene, as revealed by a downshift of the Dirac cone probed by angle-resolved photoemission experiments.
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