4.7 Article

Bio-Phenolic Resin Derived Porous Carbon Materials for High-Performance Lithium-Ion Capacitor

Journal

POLYMERS
Volume 14, Issue 3, Pages -

Publisher

MDPI
DOI: 10.3390/polym14030575

Keywords

biomass; porous carbon; Li4Ti5O12; supercapacitor; lithium-ion battery

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In this article, hierarchical porous carbon (HPC) with high surface area was prepared using rubberwood sawdust pyrolyzed with CaCO3 as a hard template. The HPC showed excellent performance in supercapacitors and hybrid lithium-ion capacitors, indicating great potential for energy storage applications.
In this article, hierarchical porous carbon (HPC) with high surface area of 1604.9 m(2)/g is prepared by the pyrolysis of rubberwood sawdust using CaCO3 as a hard template. The bio-oil pyrolyzed from the rubber sawdust, followed by the polymerization reaction to form resole phenolic resin, can be used as a carbon source to prepare HPC. The biomass-derived HPC shows a three-dimensionally interconnected morphology which can offer a continuous pathway for ionic transport. The symmetrical supercapacitors based on the as-prepared HPC were tested in 1.0 M tetraethylammonium tetrafluoroborate/propylene carbonate electrolyte. The results of electrochemical analysis show that the HPC-based supercapacitor exhibits a high specific capacitance of 113.3 F/g at 0.5 A/g with superior rate capability and cycling stability up to 5000 cycles. Hybrid lithium-ion capacitors (LICs) based on the HPC and Li4Ti5O12 (LTO) were also fabricated. The LICs have a maximum energy density of 113.3 Wh/kg at a power density of 281 W/kg. Moreover, the LIC also displays a remarkable cycling performance with a retention of 92.8% after 3000 cycles at a large current density of 0.75 A/g, suggesting great potential application in the energy storage of the LIC.

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