Abstract
Stacking of individual graphene sheets (GS) is effectively inhibited by introducing one-dimensional carbon nanotubes to form a 3-D hierarchical structure which enhances the utilization of GS-based composites. From SEM images, CNTs are useful nanospacers for diminishing the face-to-face aggregation of GS. The specific electrochemically active surface area (SECSA) and specific double-layer capacitance (CS,DL) of Pt/GS-CNTs (127.9 m 2/g, 171.3 F/g) is much higher than that of Pt/GS (105.4 m 2/g, 104.7 F/g) and Pt/CNTs (51.5 m2/g, 37.1 F/g), revealing the synergistic effects between GS and CNTs on enhancing the electrochemical activity of Pt nanoparticles and electrolyte-accessible surface area. © 2010 Elsevier B.V. All rights reserved.
Author supplied keywords
Cite
CITATION STYLE
Yang, S. Y., Chang, K. H., Lee, Y. F., Ma, C. C. M., & Hu, C. C. (2010). Constructing a hierarchical graphene-carbon nanotube architecture for enhancing exposure of graphene and electrochemical activity of Pt nanoclusters. Electrochemistry Communications, 12(9), 1206–1209. https://doi.org/10.1016/j.elecom.2010.06.020
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.