4.6 Article

High-performance flexible asymmetric supercapacitors based on 3D porous graphene/MnO2 nanorod and graphene/Ag hybrid thin-film electrodes

期刊

JOURNAL OF MATERIALS CHEMISTRY C
卷 1, 期 6, 页码 1245-1251

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c2tc00235c

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资金

  1. Ministry of Education of China [708039, 111-2-04]
  2. Shanghai Municipal Education Commission [07SG37]
  3. NSF of China [51072034, 51172042]
  4. Eastern Scholar

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We demonstrate a simple method for preparing flexible, free-standing, three-dimensional porous graphene/MnO2 nanorod and graphene/Ag hybrid thin-film electrodes using a filtration assembly process. These graphene hybrid films, which accelerate ion and electron transport by providing lower ion-transport resistances and shorter diffusion-distances, exhibit high specific capacitances and power performances, and excellent mechanical flexibility. A novel asymmetric supercapacitor (SC) has been fabricated by using a graphene/MnO2 nanorod thin film as the positive electrode and a graphene/Ag thin film as the negative electrode. These devices exhibit a maximum energy density of 50.8 W h kg(-1) and present a high power density of 90.3 kW kg(-1), even at an energy density of 7.53 W h kg(-1). The bent hybrid nanostructured asymmetric SC is connected to spin a fan, which also proved the high power density of the fabricated asymmetric SCs. These results suggest that such asymmetric graphene/MnO2 nanorod and graphene/Ag hybrid thin-film architectures are promising for next-generation high-performance flexible supercapacitors.

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