Chemical functionalization of graphene via aryne cycloaddition: a theoretical study

Zhao, JX; Wang, HX; Gao, B; Wang, XG; Cai, QH; Wang, XZ

HERO ID

901424

Reference Type

Journal Article

Year

2012

Language

English

PMID

22127614

HERO ID 901424
In Press No
Year 2012
Title Chemical functionalization of graphene via aryne cycloaddition: a theoretical study
Authors Zhao, JX; Wang, HX; Gao, B; Wang, XG; Cai, QH; Wang, XZ
Journal Journal of Molecular Modeling
Volume 18
Issue 6
Page Numbers 2861-2868
Abstract Chemical functionalization of graphene provides a promising route to improve its solubility in water and organic solvents as well as modify its electronic properties, thus significantly expanding its potential applications. In this article, by using density functional theory (DFT) methods, we have studied the effects of the chemical functionalization of graphenes via aryne cycloaddition on its properties. We found that the adsorption of an isolated aryne group on the graphene sheet is very weak with the adsorption energy of -0.204 eV, even though two new single C-C interactions are formed between the aryne group and the graphene. However, the interaction of graphene with the aryne group can be greatly strengthened by (i) substituting the H-atoms in aryne group with F-, Cl-, -NO(2) (electron-withdrawing capability), or CH(3)-group (electron-donating capability), and (ii) increasing the coverage of the adsorbed aryne groups on the graphene sheet. As expected, the strongest bonding is found on the graphene edges, in which the adsorbed aryne groups prefer to be far away from each other. Interestingly, chemical functionalization with aryne groups leads to an opening of the band gap of graphene, which is dependent on the coverage of the adsorbed aryne groups. The present work provides an insight into the modifications of graphene with aryne groups in experiment.
Doi 10.1007/s00894-011-1309-8
Pmid 22127614
Wosid WOS:000304621400056
Is Certified Translation No
Dupe Override No
Comments Source: Web of Science WOS:000304621400056
Is Public Yes
Language Text English
Keyword DFT; Functionalization; Graphene
Is Qa No