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Phytic acid controlled in situ synthesis of amorphous cobalt phosphate/carbon composite as anode materials with a high mass loading for symmetrical supercapacitor: amorphization of the electrode to boost the energy density

Transition metal phosphate (TMPi)-based composites as anode electrode materials in supercapacitor applications are less reported. Herein, we report a phytic acid (PA)-assisted in situ-formed amorphous cobalt phosphate/carbon (CoPi/C) composite grown on a flexible woven carbon cloth (CC) via a simple...

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Autores principales: Kim, Taewoo, Tiwari, Arjun Prasad, Chhetri, Kisan, Ojha, Gunendra Prasad, Kim, Hyoju, Chae, Su-Hyeong, Dahal, Bipeen, Lee, Byoung Min, Mukhiya, Tanka, Kim, Hak Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9417142/
https://www.ncbi.nlm.nih.gov/pubmed/36132926
http://dx.doi.org/10.1039/d0na00670j
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author Kim, Taewoo
Tiwari, Arjun Prasad
Chhetri, Kisan
Ojha, Gunendra Prasad
Kim, Hyoju
Chae, Su-Hyeong
Dahal, Bipeen
Lee, Byoung Min
Mukhiya, Tanka
Kim, Hak Yong
author_facet Kim, Taewoo
Tiwari, Arjun Prasad
Chhetri, Kisan
Ojha, Gunendra Prasad
Kim, Hyoju
Chae, Su-Hyeong
Dahal, Bipeen
Lee, Byoung Min
Mukhiya, Tanka
Kim, Hak Yong
author_sort Kim, Taewoo
collection PubMed
description Transition metal phosphate (TMPi)-based composites as anode electrode materials in supercapacitor applications are less reported. Herein, we report a phytic acid (PA)-assisted in situ-formed amorphous cobalt phosphate/carbon (CoPi/C) composite grown on a flexible woven carbon cloth (CC) via a simple one-step carbonization approach. The tunable synthesis of amorphous and crystalline composites is shown by simply controlling the concentration of the cobalt salts. The strategy for high mass loading to 12 mg cm(−2) is also shown in this report. Importantly, the resulting amorphous electrode materials exhibit electric double-layer capacitance (EDLC) behavior that works over a wide potential range from −1.4 to +0.5 V in an aqueous solution of potassium hydroxide (2 M KOH) and from −1.5 to +1.5 V in sodium sulfate (1 M Na(2)SO(4)). The amorphous electrode as an anode is capable of delivering an areal capacitance up to 2.15 F cm(−2) at a current density of 4 mA cm(−2) (gravimetric capacitance up to 606.1 F g(−1) at 1 Ag(−1)) and has a retention of 94.2% at 10 000 cycles. The flexible solid-state symmetric device fabricated shows an energy density of approximately 620.0 μW h cm(−2) at a power density of 4.7 mW cm(−2) (31.1 W h kg(−1) at 476.0 W kg(−1)). This study offers a novel route for the generation of metal phosphate-based anode materials with high capacitance for symmetrical supercapacitor device with high energy density.
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spelling pubmed-94171422022-09-20 Phytic acid controlled in situ synthesis of amorphous cobalt phosphate/carbon composite as anode materials with a high mass loading for symmetrical supercapacitor: amorphization of the electrode to boost the energy density Kim, Taewoo Tiwari, Arjun Prasad Chhetri, Kisan Ojha, Gunendra Prasad Kim, Hyoju Chae, Su-Hyeong Dahal, Bipeen Lee, Byoung Min Mukhiya, Tanka Kim, Hak Yong Nanoscale Adv Chemistry Transition metal phosphate (TMPi)-based composites as anode electrode materials in supercapacitor applications are less reported. Herein, we report a phytic acid (PA)-assisted in situ-formed amorphous cobalt phosphate/carbon (CoPi/C) composite grown on a flexible woven carbon cloth (CC) via a simple one-step carbonization approach. The tunable synthesis of amorphous and crystalline composites is shown by simply controlling the concentration of the cobalt salts. The strategy for high mass loading to 12 mg cm(−2) is also shown in this report. Importantly, the resulting amorphous electrode materials exhibit electric double-layer capacitance (EDLC) behavior that works over a wide potential range from −1.4 to +0.5 V in an aqueous solution of potassium hydroxide (2 M KOH) and from −1.5 to +1.5 V in sodium sulfate (1 M Na(2)SO(4)). The amorphous electrode as an anode is capable of delivering an areal capacitance up to 2.15 F cm(−2) at a current density of 4 mA cm(−2) (gravimetric capacitance up to 606.1 F g(−1) at 1 Ag(−1)) and has a retention of 94.2% at 10 000 cycles. The flexible solid-state symmetric device fabricated shows an energy density of approximately 620.0 μW h cm(−2) at a power density of 4.7 mW cm(−2) (31.1 W h kg(−1) at 476.0 W kg(−1)). This study offers a novel route for the generation of metal phosphate-based anode materials with high capacitance for symmetrical supercapacitor device with high energy density. RSC 2020-09-09 /pmc/articles/PMC9417142/ /pubmed/36132926 http://dx.doi.org/10.1039/d0na00670j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Kim, Taewoo
Tiwari, Arjun Prasad
Chhetri, Kisan
Ojha, Gunendra Prasad
Kim, Hyoju
Chae, Su-Hyeong
Dahal, Bipeen
Lee, Byoung Min
Mukhiya, Tanka
Kim, Hak Yong
Phytic acid controlled in situ synthesis of amorphous cobalt phosphate/carbon composite as anode materials with a high mass loading for symmetrical supercapacitor: amorphization of the electrode to boost the energy density
title Phytic acid controlled in situ synthesis of amorphous cobalt phosphate/carbon composite as anode materials with a high mass loading for symmetrical supercapacitor: amorphization of the electrode to boost the energy density
title_full Phytic acid controlled in situ synthesis of amorphous cobalt phosphate/carbon composite as anode materials with a high mass loading for symmetrical supercapacitor: amorphization of the electrode to boost the energy density
title_fullStr Phytic acid controlled in situ synthesis of amorphous cobalt phosphate/carbon composite as anode materials with a high mass loading for symmetrical supercapacitor: amorphization of the electrode to boost the energy density
title_full_unstemmed Phytic acid controlled in situ synthesis of amorphous cobalt phosphate/carbon composite as anode materials with a high mass loading for symmetrical supercapacitor: amorphization of the electrode to boost the energy density
title_short Phytic acid controlled in situ synthesis of amorphous cobalt phosphate/carbon composite as anode materials with a high mass loading for symmetrical supercapacitor: amorphization of the electrode to boost the energy density
title_sort phytic acid controlled in situ synthesis of amorphous cobalt phosphate/carbon composite as anode materials with a high mass loading for symmetrical supercapacitor: amorphization of the electrode to boost the energy density
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9417142/
https://www.ncbi.nlm.nih.gov/pubmed/36132926
http://dx.doi.org/10.1039/d0na00670j
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