Negative capacitance based on isomeric polythiophene in action

In this study, we demonstrated that arranging positive and negative capacitance materials in series, based on isomeric polythiophene, led to a notable increase in total capacitance. Furthermore, the application of negative capacitance (NC) technology in supercapacitor (SC) construction offers the po...

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Veröffentlicht in:Soft matter 2024-10, Vol.2 (38), p.7578-7582
Hauptverfasser: Kumar, Devendra, Tiwari, Rudramani, Verma, Dipendra Kumar, Yadav, Shashikant, Parwati, Km, Rai, Rajshree, Adhikary, Pubali, Krishnamoorthi, S
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container_end_page 7582
container_issue 38
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container_title Soft matter
container_volume 2
creator Kumar, Devendra
Tiwari, Rudramani
Verma, Dipendra Kumar
Yadav, Shashikant
Parwati, Km
Rai, Rajshree
Adhikary, Pubali
Krishnamoorthi, S
description In this study, we demonstrated that arranging positive and negative capacitance materials in series, based on isomeric polythiophene, led to a notable increase in total capacitance. Furthermore, the application of negative capacitance (NC) technology in supercapacitor (SC) construction offers the potential for energy storage capabilities surpassing fundamental limits. Our findings suggest the feasibility of developing all-organic based energy storage devices with high capacitance. Series arrangement causes enhancement in total capacitance.
doi_str_mv 10.1039/d4sm01075b
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source Royal Society Of Chemistry Journals 2008-; Alma/SFX Local Collection
subjects Capacitance
Energy storage
Polythiophene
title Negative capacitance based on isomeric polythiophene in action
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