Physical properties and device applications of graphene oxide
arXiv:1912.07956 · doi:10.1007/s11467-019-0937-9
Abstract
Graphene oxide (GO), the functionalized graphene with oxygenated groups (mainly epoxy and hydroxyl), has attracted resurgent interests in the past decade owing to its large surface area, superior physical and chemical properties, and easy composition with other materials via surface functional groups. Usually, GO is used as an important raw material for mass production of graphene via reduction. However, under different conditions, the coverage, types, and arrangements of oxygen-containing groups in GO can be varied, which give rise to excellent and controllable physical properties, such as tunable electronic and mechanical properties depending closely on oxidation degree, suppressed thermal conductivity, optical transparency and fluorescence, and nonlinear optical properties. Based on these outstanding properties, many electronic, optical, optoelectronic, and thermoelectric devices with high performance can be achieved on the basis of GO. Here we present a comprehensive review on recent progress of GO, focusing on the atomic structures, fundamental physical properties, and related device applications, including transparent and flexible conductors, field-effect transistors, electrical and optical sensors, fluorescence quenchers, optical limiters and absorbers, surface enhanced Raman scattering detectors, solar cells, light-emitting diodes, and thermal rectifiers.
Review
References in corpus (12)
- Electric Field Effect in Atomically Thin Carbon Films
- The electronic properties of graphene
- Energy Band Gap Engineering of Graphene Nanoribbons
- Adsorption of H2O, NH3, CO, NO2, and NO on graphene: A first-principles study
- Modeling of graphite oxide
- Structural and Electronic Properties of Oxidized Graphene
- Imaging and Dynamics of Light Atoms and Molecules on Graphene
- Resonant scattering by realistic impurities in graphene
- The influences of long range Coulomb interaction on the electronic Mach-Zehnder interferometer of quantum Hall edge states
- Monovalent impurities on graphene: midgap states and migration barriers
- Environmental Remediation Applications of Carbon Nanotube and Graphene Oxide: Adsorption and Catalysis
- Structure of graphene oxide: thermodynamics versus kinetics