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Design and tailoring of a hierarchical graphene-carbon nanotube architecture for supercapacitors
Journal article   Peer reviewed

Design and tailoring of a hierarchical graphene-carbon nanotube architecture for supercapacitors

Shin-Yi Yang, Kuo-Hsin Chang, Hsi-Wen Tien, Ying-Feng Lee, Shin-Ming Li, Yu-Sheng Wang, Jen-Yu Wang, Chen-Chi M. Ma and Chi-Chang Hu
Journal of Materials Chemistry, Vol.21(7), pp.2374-2380
21/02/2011

Abstract

Stacking of individual graphene sheets (GS) is effectively inhibited by introducing one-dimensional carbon nanotubes (CNTs) to form a 3-D hierarchical structure which significantly enhances the electrochemical capacitive performances of GS-based composites. From SEM images, inserting proper quantity of CNTs as nanospacers can effectively impede the stacking of GS and enlarge the space between GS sheets, leading to obtain a highly porous nanostructure. The specific capacitance of GS-CNTs-9-1 (∼326.5 F g -1 at 20 mV s -1 ) is much higher than that of GS material (∼83 F g -1 ). Furthermore, the energy and power densities of GS-CNTs-9-1 are respectively as high as 21.74 Wh kg -1 and 78.29 kW kg -1 , revealing that the hierarchical graphene-CNT architecture provides remarkable effects on enhancing the capacitive performance of GS-based composites. Therefore, the GS-CNT composites are promising carbon materials for supercapacitors. © The Royal Society of Chemistry.

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