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Combined Effects of Functional Groups, Lattice Defects, and Edges in the Infrared Spectra of Graphene Oxide

Authors :
Zhang, Cui
Dabbs, Daniel M.
Liu, Li-Min
Aksay, Ilhan A.
Car, Roberto
Selloni, Annabella
Source :
The Journal of Physical Chemistry - Part C; August 2015, Vol. 119 Issue: 32 p18167-18176, 10p
Publication Year :
2015

Abstract

Infrared spectroscopy in combination with density functional theory calculations has been widely used to characterize the structure of graphene oxide and its reduced forms. Yet, the synergistic effects of different functional groups, lattice defects, and edges on the vibrational spectra are not well understood. Here, we report first-principles calculations of the infrared spectra of graphene oxide performed on realistic, thermally equilibrated, structural models that incorporate lattice vacancies and edges along with various oxygen-containing functional groups. Models including adsorbed water are examined as well. Our results show that lattice vacancies lead to important blue and red shifts in the OH stretching and bending bands, respectively, whereas the presence of adsorbed water leaves these shifts largely unaffected. We also find unique infrared features for edge carboxyls resulting from interactions with both nearby functional groups and the graphene lattice. Comparison of the computed vibrational properties to our experiments clarifies the origin of several observed features and provides evidence that defects and edges are essential for characterizing and interpreting the infrared spectrum of graphene oxide.

Details

Language :
English
ISSN :
19327447 and 19327455
Volume :
119
Issue :
32
Database :
Supplemental Index
Journal :
The Journal of Physical Chemistry - Part C
Publication Type :
Periodical
Accession number :
ejs36408282
Full Text :
https://doi.org/10.1021/acs.jpcc.5b02727