4.7 Article

Preparation and characterization of self-assembled layer by layer NiCo2O4-reduced graphene oxide nanocomposite with improved electrocatalytic properties

期刊

JOURNAL OF ALLOYS AND COMPOUNDS
卷 590, 期 -, 页码 266-276

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jallcom.2013.12.111

关键词

Graphene; Nanocomposite materials; Nickel-cobaltite; Catalyst

资金

  1. Converging Research Center Program through the Ministry of Science, ICT & Future Planning [2013K000404]
  2. Basic Science Research Program through the National Research Foundation (NRF)
  3. Ministry of Education of Korea [NRF-2013R1A1A2011608]

向作者/读者索取更多资源

NiCo2O4 nanoparticles dispersed on reduced graphene oxide (RGO) are prepared by simultaneously reducing graphene oxide (GO), nickel and cobalt nitrate via a hydrothermal method assisted by post annealing at low temperature. The method involves formation of hydroxides on GO using ammonia under hydrothermal conditions. Subsequent thermal treatment at 300 degrees C led to the conversion of hydroxides into single-phase NiCo2O4 atop the RGO. The synthesized products are characterized through several techniques including X-ray diffraction (XRD), ultraviolet-visible spectroscopy (UV-Vis), Fourier transform infrared spectroscopy (FT-IR), Raman spectroscopy (RS), field emission scanning electron microscopy (FE-SEM), transmission electron microscopy (TEM) and X-ray photoelectron spectroscopy (XPS). The FE-SEM investigations reveal the growth of a layer by layer assembly of NiCo2O4-RGO (2:1) nanocomposite, where the NiCo2O4 nanoparticles are tightly packed between the layers of RGO. Further, the catalytic properties of the NiCo2O4-RGO nanocomposite are investigated for the oxygen evolution reaction (OER) through cyclic voltammetry (CV) measurements. It is observed that the special structural features of the NiCo2O4-RGO (2:1) nanocomposite, including layer by layer assembly, integrity and excellent dispersion of the NiCo2O4 nanoparticles atop the RGO, produced a synergistic effect and therefore significantly improved the electrochemical performance. The oxidation potential (0.135 V) of NiCo2O4-RGO (2:1) nanocomposite was observed to be lower than that of bare NiCo2O4 nanoparticles (0.33 V), whereas the corresponding current densities were measured to be 4.1 mA/cm(2) and 3.11 mA/cm(2), respectively. (C) 2013 Elsevier B.V. All rights reserved.

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