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Charge driven lateral structural evolution of ions in electric double layer capacitors strongly correlates with differential capacitanceElectronic supplementary information (ESI) available: Details of the simulation process; RDF in different simulation periods; determination of the surface charge compensation parameter max; molecule distribution in the z-direction near the anode; interfacial configurations of ions near the electrode at different surface charge compensation parameters κAnion; 2D
Erscheinungsjahr
2018-03
Quelle
Alma/SFX Local Collection
Beschreibungen/Notizen
Electric double layers (EDLs) play a decisive role in the energy storage of supercapacitors. Recently, voltage/charge driven ordering transitions of ions in the lateral direction of the EDL were found to dramatically affect the capacitance in experiments and molecular dynamics (MD) simulations. However, the correlation between the lateral structure of the ions and the capacitance was not well understood. In this work, all-atom MD simulations were applied to investigate the lateral ordering of the [BMIM][PF
6
] ionic liquid on both anode and cathode surfaces. The lateral ordering of ions was systematically characterized using the 2D structure factor, radial distribution function and coordination number. It was found that the disorder to order transition of PF
6
−
ions on the anode occurs when the number of first nearest neighboring ions converges to six. What's more, the local maximum of the differential capacitance profile not only appears at the disorder-order transition point, but also occurs at the splitting point of the radial distribution function peak and where the number of second and third nearest neighboring ions become converged and stable. On the cathode side, a long range ordered phase of BMIM
+
ions does not exist due to its multi-adsorption states on the electrode. To understand the origin of the correlation between the lateral structure and the differential capacitance, the correlation between the structures in the lateral and normal directions was investigated. Such a structural correlation is closely related to the three-dimensional characteristics of the EDL structure and the over-screening phenomenon.
The correlation between differential capacitance and lateral ordering evolution of ionic liquids at charged electrodes has been investigated in this work.
Sprache
Englisch
Identifikatoren
ISSN: 1463-9076
eISSN: 1463-9084
DOI: 10.1039/c7cp08075a
Titel-ID: cdi_rsc_primary_c7cp08075a
Format
–
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