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Multi-heteroatom doped nanocarbons for high performance double carbon potassium ion capacitor

Pham, H. D. (author)
Fernando, J. F. S. (author)
Horn, M. (author)
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MacLeod, J. (author)
Motta, N. (author)
Doherty, W. O. S. (author)
Payne, A. (author)
Nanjundan, A. K. (author)
Golberg, D. (author)
Dubal, D. (author)
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Elsevier Ltd, 2021
2021
English.
In: Electrochimica Acta. - : Elsevier Ltd. - 0013-4686 .- 1873-3859. ; 389
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Potassium-ion capacitor (KICs) is an emerging technology that can potentially combines the virtue of high power capability of supercapacitors and high energy density of batteries. Herein, we have scientifically transformed blue denim textile waste into two different forms of nanocarbons to assemble dual carbon potassium-ion hybrid capacitor (KIHC). The unique composition of indigo and sulphur dyes in blue jeans enables to produce multi-heteroatom (nitrogen, sulphur and oxygen) doped hard carbon (MHC) with large interlayer spacing (0.41 nm) in a single step. An in-situ transmission electron microscopy (TEM) analysis reveal that the charge stored in disordered and large interlayer spaced graphitic structure enable fast kinetics for efficient potassium-ion transportation. Coupling with an activated carbon foam (ACF)-based cathode, a full cell of potassium-ion capacitor successfully delivers a high energy density of 181 Wh kg−1 at 70.4 W kg−1 and 61.8 Wh kg−1 at 4000 W kg−1, as well as an long lifespan of 5000 cycles with over 89% of capacity retention. These performance statistics match or exceed state-of-the-art values for KIHCs, providing novel strategy to develop dual carbon ion capacitors with high energy and high power capabilities. © 2021

Keyword

Hybrid energy storage
Nanocarbons
Potassium-ion
Waste textiles
Activated carbon
Foams
High resolution transmission electron microscopy
Potassium
Sulfur
Supercapacitor
Textiles
Emerging technologies
Heteroatoms
High power capability
Higher energy density
Hybrid capacitor
Nano-carbon
Performance
Potassium ions
Ions

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ref (subject category)
art (subject category)

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