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Unprecedented energy storage in metal–organic complexes via constitutional isomerism

The essence of any electrochemical system is engraved in its electrical double layer (EDL), and we report its unprecedented reorganization by the structural isomerism of molecules, with a direct consequence on their energy storage capability. Electrochemical and spectroscopic analyses in combination...

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Autores principales: Kottaichamy, Alagar Raja, Deebansok, Siraprapha, Deng, Jie, Nazrulla, Mohammed Azeezulla, Zhu, Yachao, Bhat, Zahid Manzoor, Devendrachari, Mruthyunjayachari Chattanahalli, Vinod, Chathakudath Prabhakaran, Nimbegondi Kotresh, Harish Makri, Fontaine, Olivier, Thotiyl, Musthafa Ottakam
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/PMC10266471/
https://www.ncbi.nlm.nih.gov/pubmed/37325136
http://dx.doi.org/10.1039/d3sc01692g
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author Kottaichamy, Alagar Raja
Deebansok, Siraprapha
Deng, Jie
Nazrulla, Mohammed Azeezulla
Zhu, Yachao
Bhat, Zahid Manzoor
Devendrachari, Mruthyunjayachari Chattanahalli
Vinod, Chathakudath Prabhakaran
Nimbegondi Kotresh, Harish Makri
Fontaine, Olivier
Thotiyl, Musthafa Ottakam
author_facet Kottaichamy, Alagar Raja
Deebansok, Siraprapha
Deng, Jie
Nazrulla, Mohammed Azeezulla
Zhu, Yachao
Bhat, Zahid Manzoor
Devendrachari, Mruthyunjayachari Chattanahalli
Vinod, Chathakudath Prabhakaran
Nimbegondi Kotresh, Harish Makri
Fontaine, Olivier
Thotiyl, Musthafa Ottakam
author_sort Kottaichamy, Alagar Raja
collection PubMed
description The essence of any electrochemical system is engraved in its electrical double layer (EDL), and we report its unprecedented reorganization by the structural isomerism of molecules, with a direct consequence on their energy storage capability. Electrochemical and spectroscopic analyses in combination with computational and modelling studies demonstrate that an attractive field-effect due to the molecule's structural-isomerism, in contrast to a repulsive field-effect, spatially screens the ion–ion coulombic repulsions in the EDL and reconfigures the local density of anions. In a laboratory-level prototype supercapacitor, those with β-structural isomerism exhibit nearly 6-times elevated energy storage compared to the state-of-the-art electrodes, by delivering ∼535 F g(−1) at 1 A g(−1) while maintaining high performance metrics even at a rate as high as 50 A g(−1). The elucidation of the decisive role of structural isomerism in reconfiguring the electrified interface represents a major step forward in understanding the electrodics of molecular platforms.
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spelling pubmed-102664712023-06-15 Unprecedented energy storage in metal–organic complexes via constitutional isomerism Kottaichamy, Alagar Raja Deebansok, Siraprapha Deng, Jie Nazrulla, Mohammed Azeezulla Zhu, Yachao Bhat, Zahid Manzoor Devendrachari, Mruthyunjayachari Chattanahalli Vinod, Chathakudath Prabhakaran Nimbegondi Kotresh, Harish Makri Fontaine, Olivier Thotiyl, Musthafa Ottakam Chem Sci Chemistry The essence of any electrochemical system is engraved in its electrical double layer (EDL), and we report its unprecedented reorganization by the structural isomerism of molecules, with a direct consequence on their energy storage capability. Electrochemical and spectroscopic analyses in combination with computational and modelling studies demonstrate that an attractive field-effect due to the molecule's structural-isomerism, in contrast to a repulsive field-effect, spatially screens the ion–ion coulombic repulsions in the EDL and reconfigures the local density of anions. In a laboratory-level prototype supercapacitor, those with β-structural isomerism exhibit nearly 6-times elevated energy storage compared to the state-of-the-art electrodes, by delivering ∼535 F g(−1) at 1 A g(−1) while maintaining high performance metrics even at a rate as high as 50 A g(−1). The elucidation of the decisive role of structural isomerism in reconfiguring the electrified interface represents a major step forward in understanding the electrodics of molecular platforms. The Royal Society of Chemistry 2023-05-17 /pmc/articles/PMC10266471/ /pubmed/37325136 http://dx.doi.org/10.1039/d3sc01692g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Kottaichamy, Alagar Raja
Deebansok, Siraprapha
Deng, Jie
Nazrulla, Mohammed Azeezulla
Zhu, Yachao
Bhat, Zahid Manzoor
Devendrachari, Mruthyunjayachari Chattanahalli
Vinod, Chathakudath Prabhakaran
Nimbegondi Kotresh, Harish Makri
Fontaine, Olivier
Thotiyl, Musthafa Ottakam
Unprecedented energy storage in metal–organic complexes via constitutional isomerism
title Unprecedented energy storage in metal–organic complexes via constitutional isomerism
title_full Unprecedented energy storage in metal–organic complexes via constitutional isomerism
title_fullStr Unprecedented energy storage in metal–organic complexes via constitutional isomerism
title_full_unstemmed Unprecedented energy storage in metal–organic complexes via constitutional isomerism
title_short Unprecedented energy storage in metal–organic complexes via constitutional isomerism
title_sort unprecedented energy storage in metal–organic complexes via constitutional isomerism
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10266471/
https://www.ncbi.nlm.nih.gov/pubmed/37325136
http://dx.doi.org/10.1039/d3sc01692g
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