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Improving the performance of an anionic MOF by counter cation replacement as electrode material in a full cell setup of a potassium ion capacitor

Potassium-based energy storage devices are attracting increasing attention as an alternative to lithium and sodium systems. In addition, metal–organic frameworks (MOFs) can be considered as promising electrode materials for this type of device due to their advantageous properties. Herein, the anioni...

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Autores principales: Aphirakaramwong, Chalita, Akintola, Oluseun, Plass, Christian T., Sawangphruk, Montree, Plass, Winfried, Balducci, Andrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10113920/
https://www.ncbi.nlm.nih.gov/pubmed/37091608
http://dx.doi.org/10.1039/d3ra01746j
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author Aphirakaramwong, Chalita
Akintola, Oluseun
Plass, Christian T.
Sawangphruk, Montree
Plass, Winfried
Balducci, Andrea
author_facet Aphirakaramwong, Chalita
Akintola, Oluseun
Plass, Christian T.
Sawangphruk, Montree
Plass, Winfried
Balducci, Andrea
author_sort Aphirakaramwong, Chalita
collection PubMed
description Potassium-based energy storage devices are attracting increasing attention as an alternative to lithium and sodium systems. In addition, metal–organic frameworks (MOFs) can be considered as promising electrode materials for this type of device due to their advantageous properties. Herein, the anionic MOF JUMP-1 and its analog with pre-loading of potassium cations, namely JUMP-1(K), were synthesized and characterized. The anionic framework of JUMP-1 is found to be extremely stable towards the exchange of the dimethylammonium cations by potassium ions. These MOFs were tested in composite electrodes in combination with conventional organic electrolytes as anode materials in a potassium-based system, including the full cell assembly of a potassium ion capacitor (KIC). The results show the significant improvement in capacity between the pristine JUMP-1 and the potassium-exchanged analog JUMP-1(K) as electrode materials. KICs containing JUMP-1(K) coupled with activated carbon (AC) display a promising stability over 4000 cycles. According to the results from these studies, the composite MOF electrode with the potassium-exchange analog JUMP-1(K) presents a promising approach, for which the electrochemical performance compared to the pristine anionic MOF is significantly enhanced.
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spelling pubmed-101139202023-04-20 Improving the performance of an anionic MOF by counter cation replacement as electrode material in a full cell setup of a potassium ion capacitor Aphirakaramwong, Chalita Akintola, Oluseun Plass, Christian T. Sawangphruk, Montree Plass, Winfried Balducci, Andrea RSC Adv Chemistry Potassium-based energy storage devices are attracting increasing attention as an alternative to lithium and sodium systems. In addition, metal–organic frameworks (MOFs) can be considered as promising electrode materials for this type of device due to their advantageous properties. Herein, the anionic MOF JUMP-1 and its analog with pre-loading of potassium cations, namely JUMP-1(K), were synthesized and characterized. The anionic framework of JUMP-1 is found to be extremely stable towards the exchange of the dimethylammonium cations by potassium ions. These MOFs were tested in composite electrodes in combination with conventional organic electrolytes as anode materials in a potassium-based system, including the full cell assembly of a potassium ion capacitor (KIC). The results show the significant improvement in capacity between the pristine JUMP-1 and the potassium-exchanged analog JUMP-1(K) as electrode materials. KICs containing JUMP-1(K) coupled with activated carbon (AC) display a promising stability over 4000 cycles. According to the results from these studies, the composite MOF electrode with the potassium-exchange analog JUMP-1(K) presents a promising approach, for which the electrochemical performance compared to the pristine anionic MOF is significantly enhanced. The Royal Society of Chemistry 2023-04-19 /pmc/articles/PMC10113920/ /pubmed/37091608 http://dx.doi.org/10.1039/d3ra01746j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Aphirakaramwong, Chalita
Akintola, Oluseun
Plass, Christian T.
Sawangphruk, Montree
Plass, Winfried
Balducci, Andrea
Improving the performance of an anionic MOF by counter cation replacement as electrode material in a full cell setup of a potassium ion capacitor
title Improving the performance of an anionic MOF by counter cation replacement as electrode material in a full cell setup of a potassium ion capacitor
title_full Improving the performance of an anionic MOF by counter cation replacement as electrode material in a full cell setup of a potassium ion capacitor
title_fullStr Improving the performance of an anionic MOF by counter cation replacement as electrode material in a full cell setup of a potassium ion capacitor
title_full_unstemmed Improving the performance of an anionic MOF by counter cation replacement as electrode material in a full cell setup of a potassium ion capacitor
title_short Improving the performance of an anionic MOF by counter cation replacement as electrode material in a full cell setup of a potassium ion capacitor
title_sort improving the performance of an anionic mof by counter cation replacement as electrode material in a full cell setup of a potassium ion capacitor
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10113920/
https://www.ncbi.nlm.nih.gov/pubmed/37091608
http://dx.doi.org/10.1039/d3ra01746j
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