2022
DOI: 10.1021/acs.langmuir.2c02880
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Molecular Insights into Curvature Effects on the Capacitance of Electrical Double Layers in Tricationic Ionic Liquids with Carbon Nanotube Electrodes

Abstract: Ionic liquid (IL) electrolytes and carbon nanotube (CNT) electrodes have exhibited promising electrochemical performance in supercapacitors. Nevertheless, the adaptability of tricationic ILs (TILs) in CNT-based supercapacitors remains unknown. Herein, the performance of supercapacitors with (6,6), (8,8), (12,12), and (15,15) CNT electrodes in the TIL [C6(mim)3](Tf2N)3 was assessed via molecular dynamics simulations, paying attention to the electric double-layer (EDL) structures and the relations between the CN… Show more

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Cited by 4 publications
(2 citation statements)
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“…Tricationic ILs (TILs) [ 85 , 86 ] in CNT-based supercapacitors were shown to be adaptable through the use of MD modeling, according to Li et al [ 83 ]. As the CNT curvature rises, the EDL capacitance in the TIL grows dramatically, and the capacitance of the TIL/CNT systems is larger than the capacitance of the TIL/graphene systems.…”
Section: The Influence Of Novel Electrodesmentioning
confidence: 99%
See 1 more Smart Citation
“…Tricationic ILs (TILs) [ 85 , 86 ] in CNT-based supercapacitors were shown to be adaptable through the use of MD modeling, according to Li et al [ 83 ]. As the CNT curvature rises, the EDL capacitance in the TIL grows dramatically, and the capacitance of the TIL/CNT systems is larger than the capacitance of the TIL/graphene systems.…”
Section: The Influence Of Novel Electrodesmentioning
confidence: 99%
“…Copyright2020, Elsevier. ( e ) The adaptation of tricationic ILs (TILs) in the TIL/graphene system and CNT-based supercapacitors [ 83 ]. Copyright2023, American Chemical Society.…”
Section: Figurementioning
confidence: 99%