Abstract
Nanocomposites of reduced graphene oxide and manganese (II,III) oxide can be synthesized by the freeze-drying process of the mixed colloidal suspension of graphene oxide and manganese oxide, and the subsequent heat-treatment. The calcined reduced graphene oxide-manganese (II,III) oxide nanocomposites are X-ray amorphous, suggesting the formation of homogeneous and disordered mixt. without any phase sepn. The redn. of graphene oxide to reduced graphene oxide upon the heat-treatment is evidenced by Fourier-transformed IR spectroscopy. Field emission-scanning electronic microscopy and energy dispersive spectrometry clearly demonstrate the formation of porous structure by the house-of-cards type stacking of reduced graphene oxide nanosheets and the homogeneous distribution of manganese ions in the nanocomposites. According to Mn K-edge X-ray absorption spectroscopy, manganese ions in the calcined nanocomposites are stabilized in octahedral symmetry with mixed Mn oxidn. state of Mn(II)/Mn(III). The present reduced graphene oxide-manganese oxide nanocomposites show characteristic pseudocapacitance behavior superior to the pristine manganese oxide, suggesting their applicability as electrode material for supercapacitors. [on SciFinder(R)]
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CITATION STYLE
Lee, Y.-R., Song, M.-S., Lee, K.-M., Kim, I.-Y., & Hwang, S.-J. (2011). Synthesis and Electrochemical Characterization of Reduced Graphene Oxide-Manganese Oxide Nanocomposites. Journal of Electrochemical Science and Technology, 2(1), 1–7. https://doi.org/10.5229/jecst.2011.2.1.001
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