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논문 기본 정보

자료유형
학술저널
저자정보
Yuqing Song (University of Science and Technology of China) Hongfei Wang (University of Science and Technology of China) Lifeng Yan (University of Science and Technology of China)
저널정보
성균관대학교 성균나노과학기술원 NANO NANO Vol.14 No.5
발행연도
2019.1
수록면
105 - 116 (12page)

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초록· 키워드

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Three-dimensional (3D) graphene-based materials have attracted much attention in the field of supercapacitors for their large surface areas and fast electronic conductivity capability. Faradaic pseudo-capacitance materials inside the architecture can enlarge the electrochemical performance of the electrode. Additionally, metal porphyrins are negative electrode active materials for supercapacitors as they have potential high pseudo-capacitance, conductivity and N-doping. The design and preparation of the 3D cobalt-porphyrin modified graphene hydrogels (3D CoP/GHs) is an interesting topic. Here, we have fabricated the 3D CoP/GH by a two-step method. The composite electrode reaches a specific capacitance of 335 F g -1, twice that of pure GHs. At the same time, resistance of the electrode material decreases and the ion transfer is accelerated due to the addition of cobalt-porphyrin. After 10 000 cycles, the 3D CoP/GH maintains its stable specific capacitance retention of 94.11% indicating its excellent cycle life. The cycle life is much better than that of a hydrogel that has not been doped (81.63%) according to our previous work. Then we fabricated an asymmetrical supercapacitor which uses both the 3D CoP/GH and GH as the two electrodes (3D CoP/GHjjGH), and reaches an outstanding energy density of 30.40 Wh kg -1 at a current density of 1 A g -1 while the power density is 749.5 W kg -1.

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