4.6 Article

3D flower-structured graphene from CO2 for supercapacitors with ultrahigh areal capacitance at high current density

期刊

JOURNAL OF MATERIALS CHEMISTRY A
卷 3, 期 19, 页码 10183-10187

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c5ta01055a

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资金

  1. U.S. National Science Foundation [NSF-CBET-0931587]
  2. ACS Petroleum Research Fund [PRF-51799-ND10]

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The widespread application of supercapacitors, which store electrical charge on high-surface-area conducting materials, is limited by their small accessible area and low areal mass loading of active materials due to their microporous structures. Herein, we report that 3D cauliflower-fungus-like graphene (CFG) with hierarchical meso-porous-structure and large fully accessible surface area, which was synthesized directly from CO2 via the one-step exothermic approach, exhibited an ultrahigh areal capacitance up to 1.16 F cm (2) at a high current density up to 10 A g(-1). The excellent performance remained almost unchangedwith increasing temperature to 55 degrees C. Furthermore, the 3D CFG electrode can reach a high efficient-mass-loading of 11.16 mg cm(-2), which meets the current commercial requirement (about 10 mg cm(-2)). This solves a critical issue that the enhancement of mass loading usually sacrifices the mass capacitance.

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