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Hybrid energy storage: the merging of battery and supercapacitor chemistries

Chemical Society Reviews · 2015 · Vol. 44(7) · pp. 1777–1790
Deepak P. DubalOmar AyyadV. RuizPedro Gómez‐Romero

Abstract

The hybrid approach allows for a reinforcing combination of properties of dissimilar components in synergic combinations. From hybrid materials to hybrid devices the approach offers opportunities to tackle much needed improvements in the performance of energy storage devices. This paper reviews the different approaches and scales of hybrids, materials, electrodes and devices striving to advance along the diagonal of Ragone plots, providing enhanced energy and power densities by combining battery and supercapacitor materials and storage mechanisms. Furthermore, some theoretical aspects are considered regarding the possible hybrid combinations and tactics for the fabrication of optimized final devices. All of it aiming at enhancing the electrochemical performance of energy storage systems.

Supercapacitor Materials and FabricationAdvanced battery technologies researchConducting polymers and applicationsSupercapacitorEnergy storageBattery (electricity)Electrochemical energy storageCapacitive sensingElectrochemistryElectrochemical energy conversionElectrodeEnergy (signal processing)Materials science

Funding

  • Consejo Superior de Investigaciones Científicas
Citations
2,096
FWCI
59.05
field-weighted impact
References
52
Percentile
100%
vs. same field & year
Citations per year
References
An Asymmetric Hybrid Nonaqueous Energy Storage Cell
Journal of The Electrochemical Society · 2001 · 1,163 citations
Building better batteries
Nature · 2008 · 19,103 citations
A review of electrode materials for electrochemical supercapacitors
Chemical Society Reviews · 2011 · 8,927 citations
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