articleTop 1% cited
High-rate electrochemical energy storage through Li+ intercalation pseudocapacitance
Nature Materials · 2013 · Vol. 12(6) · pp. 518–522
Veronica Augustyn✉(University of California, Los Angeles)Jérémy Come(Centre National de la Recherche Scientifique)Michael A. Lowe(Cornell University)Jong Woung Kim(University of California, Los Angeles)Pierre‐Louis Taberna(Centre Interuniversitaire de Recherche et d’Ingénierie des Matériaux)Sarah H. Tolbert(University of California, Los Angeles)Héctor D. Abruña(Cornell University)Patrice Simon(Réseau sur le Stockage Electrochimique de l'énergie)Bruce Dunn(University of California, Los Angeles)
Advancements in Battery MaterialsSupercapacitor Materials and FabricationAdvanced Battery Materials and TechnologiesPseudocapacitanceIntercalation (chemistry)ElectrolyteMaterials scienceEnergy storageRedoxElectrochemistryChemical engineeringSupercapacitorNanotechnology
MeSH terms
ElectrochemistryElectrodesIntercalating AgentsLithiumNiobiumOxidesNanostructures
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References
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The Journal of Physical Chemistry B · 1997 · 1,602 citations
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Journal of The Electrochemical Society · 1995 · 1,647 citations
A review of conduction phenomena in Li-ion batteries
Journal of Power Sources · 2010 · 1,592 citations
Transition from “Supercapacitor” to “Battery” Behavior in Electrochemical Energy Storage
Journal of The Electrochemical Society · 1991 · 2,278 citations
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