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Self-assembled nanostructures in ionic liquids facilitate charge storage at electrified interfaces
by
Mao, Xianwen
, Li, Hua
, Eastoe, Julian
, Hazell, Gavin
, Hatton, T Alan
, Costa Gomes, Margarida F
, Ren, Yinying
, Atkin, Rob
, Chen, Di
, Červinka, Ctirad
, Grillo, Isabelle
, Brown, Paul
, Padua, Agilio A H
in
Charge density
/ Domains
/ Electrochemical analysis
/ Electrochemistry
/ Electrode polarization
/ Electrodes
/ Electrolytes
/ Energy storage
/ Ion distribution
/ Ionic liquids
/ Ions
/ Sails
/ Self-assembly
2019
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Self-assembled nanostructures in ionic liquids facilitate charge storage at electrified interfaces
by
Mao, Xianwen
, Li, Hua
, Eastoe, Julian
, Hazell, Gavin
, Hatton, T Alan
, Costa Gomes, Margarida F
, Ren, Yinying
, Atkin, Rob
, Chen, Di
, Červinka, Ctirad
, Grillo, Isabelle
, Brown, Paul
, Padua, Agilio A H
in
Charge density
/ Domains
/ Electrochemical analysis
/ Electrochemistry
/ Electrode polarization
/ Electrodes
/ Electrolytes
/ Energy storage
/ Ion distribution
/ Ionic liquids
/ Ions
/ Sails
/ Self-assembly
2019
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Self-assembled nanostructures in ionic liquids facilitate charge storage at electrified interfaces
by
Mao, Xianwen
, Li, Hua
, Eastoe, Julian
, Hazell, Gavin
, Hatton, T Alan
, Costa Gomes, Margarida F
, Ren, Yinying
, Atkin, Rob
, Chen, Di
, Červinka, Ctirad
, Grillo, Isabelle
, Brown, Paul
, Padua, Agilio A H
in
Charge density
/ Domains
/ Electrochemical analysis
/ Electrochemistry
/ Electrode polarization
/ Electrodes
/ Electrolytes
/ Energy storage
/ Ion distribution
/ Ionic liquids
/ Ions
/ Sails
/ Self-assembly
2019
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Self-assembled nanostructures in ionic liquids facilitate charge storage at electrified interfaces
Journal Article
Self-assembled nanostructures in ionic liquids facilitate charge storage at electrified interfaces
2019
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Overview
Driven by the potential applications of ionic liquids (ILs) in many emerging electrochemical technologies, recent research efforts have been directed at understanding the complex ion ordering in these systems, to uncover novel energy storage mechanisms at IL–electrode interfaces. Here, we discover that surface-active ILs (SAILs), which contain amphiphilic structures inducing self-assembly, exhibit enhanced charge storage performance at electrified surfaces. Unlike conventional non-amphiphilic ILs, for which ion distribution is dominated by Coulombic interactions, SAILs exhibit significant and competing van der Waals interactions owing to the non-polar surfactant tails, leading to unusual interfacial ion distributions. We reveal that, at an intermediate degree of electrode polarization, SAILs display optimum performance, because the low-charge-density alkyl tails are effectively excluded from the electrode surfaces, whereas the formation of non-polar domains along the surface suppresses undesired overscreening effects. This work represents a crucial step towards understanding the unique interfacial behaviour and electrochemical properties of amphiphilic liquid systems showing long-range ordering, and offers insights into the design principles for high-energy-density electrolytes based on spontaneous self-assembly behaviour.
Publisher
Nature Publishing Group
Subject
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