Reduced holey graphene oxide film and carbon nanotubes sandwich structure as a binder-free electrode material for supercapcitor

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作者
Khan Abdul Sammed
Lujun Pan
Muhammad Asif
Muhammad Usman
Tianze Cong
Farid Amjad
Muhammad Asif Imran
机构
[1] Dalian University of Technology,School of Physics
[2] Peking University,Department of Materials Science and Engineering College of Engineering
[3] Dalian University of Technology,School of Chemical Engineering
[4] Khwaja Fareed University of Engg. and Information Technology,Department of Physics
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A novel carbon nanotubes (CNTs) and reduced holey graphene oxide film (RHGOF) sandwich structure has been fabricated to enhance its electrochemical properties. CNTs are grown by a catalyst assisted chemical vapor deposition technique, interpenetrated between the RHGOF layers. A RHGOF/CNTs hybrid film is used as a binder-free supercapacitor electrode. The grown CNTs in the graphene layers structure act as spacers and bridges to increase the counductivity of RHGOF, while the grown CNTs on the surfaces of the graphene contribute to increase the specific surface area of RHGOF. The results demonstrate that the synthesized porous, flexible and binder free hybrid electrode has advantages of higher ion diffusion rate, longer diffusion length and larger ion accessible surface area as compared to the pristine graphene which results in an extra ordinary galvanostatic charge-discharge specific capacitance of 557 F/g at a current density of 0.5 A/g, with excellent rate capabilities and superior cyclic stabilities.
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