2023
DOI: 10.5109/6781053
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Composite of Polyaniline/Reduced Graphene Oxide with The Single-, Bi- and Tri- metal Oxides Modification and the Effect on the Capacitance Properties

Abstract: The composites of polyaniline (PANI) with reduced graphene oxide (PANI/rGO) and metals of iron, copper, and cobalt have been synthesized and coated on the nickel foam (NF) priors to measurement in three electrodes system to investigate the electrochemical properties. Surface area of PANI increased from 48.371 m 2 /g to 69.091 m 2 /g after compositing with rGO and the capacitance changed from 246.50 F/g to the highest capacitance 285.89 F/g in the form of PANI/rGO-Cu. Meanwhile, PANI/rGO-Co and PANI/rGO-Fe show… Show more

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Cited by 3 publications
(2 citation statements)
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“…Thus, the CuO based ternary composite outperformed its counterparts by providing increased surface area and specific capacitance, which is attributable to CuO's porous structure. [94] A binary (Fe 3 O 4 -NH-PANI) composite comprising functional magnetite and PANI fabricated via grafting PANI onto nanoparticles of (Fe 3 O 4 -NH 2 ). The binary nanocomposite showcased 191 F g À 1 (at 10 mV s À 1 ) specific capacitance, along with 458.3 W kg À 1 specific power and 9.3 Wh kg À 1 energy density.…”
Section: Graphene Conducting Polymers and Metal Oxides Based Ternary ...mentioning
confidence: 99%
“…Thus, the CuO based ternary composite outperformed its counterparts by providing increased surface area and specific capacitance, which is attributable to CuO's porous structure. [94] A binary (Fe 3 O 4 -NH-PANI) composite comprising functional magnetite and PANI fabricated via grafting PANI onto nanoparticles of (Fe 3 O 4 -NH 2 ). The binary nanocomposite showcased 191 F g À 1 (at 10 mV s À 1 ) specific capacitance, along with 458.3 W kg À 1 specific power and 9.3 Wh kg À 1 energy density.…”
Section: Graphene Conducting Polymers and Metal Oxides Based Ternary ...mentioning
confidence: 99%
“…Graphene, as a nanomaterial that has good mechanical and thermal stability and electrical properties, has great potential for use in electrochemical detection for food analysis [81][82][83] . Because graphene has a large surface area and many active sites, it has a high potential for charge molecular interactions, which can improve CPE selectivity and sensitivity [84][85] .…”
Section: Modified Cpes With Nanomaterials As Food Sensorsmentioning
confidence: 99%