| Literature DB >> 24717290 |
C-H Chuang1, Y-F Wang1, Y-C Shao1, Y-C Yeh2, D-Y Wang2, C-W Chen2, J W Chiou3, Sekhar C Ray4, W F Pong1, L Zhang5, J F Zhu5, J H Guo6.
Abstract
Electronic structures of graphene oxide (GO) and hydro-thermally reduced graphene oxides (rGOs) processed at low temperatures (120-180°C) were studied using X-ray absorption near-edge structure (XANES), X-ray emission spectroscopy (XES) and resonant inelastic X-ray scattering (RIXS). C K-edge XANES spectra of rGOs reveal that thermal reduction restores C = C sp(2) bonds and removes some of the oxygen and hydroxyl groups of GO, which initiates the evolution of carbonaceous species. The combination of C K-edge XANES and Kα XES spectra shows that the overlapping π and π* orbitals in rGOs and GO are similar to that of highly ordered pyrolytic graphite (HOPG), which has no band-gap. C Kα RIXS spectra provide evidence that thermal reduction changes the density of states (DOSs) that is generated in the π-region and/or in the gap between the π and π* levels of the GO and rGOs. Two-dimensional C Kα RIXS mapping of the heavy reduction of rGOs further confirms that the residual oxygen and/or oxygen-containing functional groups modify the π and σ features, which are dispersed by the photon excitation energy. The dispersion behavior near the K point is approximately linear and differs from the parabolic-like dispersion observed in HOPG.Entities:
Year: 2014 PMID: 24717290 PMCID: PMC3982168 DOI: 10.1038/srep04525
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1SEM images of (a) the as-synthesized GO, (b) the rGO formed at 150°C@3 hr, and (c) the rGO formed at 180°C@24 hr. The insets show the respective TEM images. (d) The Raman spectra were obtained at an excitation wavelength of 633 nm. (e) The normalized photoluminescence spectra of the GO and rGOs reduced at different temperatures for different periods, and (f) the sheet resistances of the GO and rGOs reduced at different temperatures for different periods.
Figure 2XANES spectra of the GO and rGOs at the C K-edge.
The bottom panels show the difference between the rGOs and GO.
Figure 3(a) The normalized C K-edge XANES and Kα XES spectra of the GO, rGOs and HOPG. (b) The normalized O K-edge XANES and Kα XES spectra of the GO and rGOs.
Figure 4(a) The normalized C Kα RIXS spectra of the GO, rGOs and HOPG obtained by excitation at photon energies of 285.5 eV (C), 286.6 eV (C), 287.9 eV (C), 288.7 eV (C) and 310.5 eV. Notably, the resonance features in the lower right-hand corner are the elastic peaks. (b) 2d-RIXS mapping of rGO (180°C@24 h) and (c) HOPG as functions of both the excitation and emission energies.