π-π stacked iron (II) phthalocyanine/graphene oxide composites: rational fabrication and excellent supercapacitor properties with superior rate performance
Journal of Solid State Electrochemistry, ISSN: 1433-0768, Vol: 25, Issue: 2, Page: 659-670
2021
- 13Citations
- 21Captures
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Article Description
Using concentrated sulfuric acid as the solvent, nanocomposites of iron (II) phthalocyanine and graphene oxide (denoted as FePcGOn) are rationally and facilely fabricated by self-assembly via π-π interactions. The unique structure of FePcGO2 renders the nanocomposites greatly improved conductivity and accelerated rates of both charge transfer and electrolyte migration. The tightly π-π stacking between FePc and GO bestows the materials structural stability. The molecularly dispersive FePc contributes much pseudocapacitance to elevate the energy density of supercapacitor. Three-electrode test reveals a high specific capacitance of 514 F g for FePcGO2 at a current density of 1 A g. A capacity of 90 F g sustains at an ultrahigh current density of 500 A g. Symmetrical two-electrode supercapacitor also demonstrates excellent supercapacitive properties of FePcGO2 and delivers a capacitance of 235.5 F g at 1 A g over 1 V with an energy density of 8.2 Wh kg. A steady capacity of 200.2 F g sustains at 5 A g after 60,000 cycles. Symmetrical FePcGO2 supercapacitor achieves high capacity of 308.6 F g and energy density of 21 Wh kg over 1.4 V at 1 A g. The present work provides insights into high-performance supercapacitive materials.
Bibliographic Details
Springer Science and Business Media LLC
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