2017
DOI: 10.1039/c7se00239d
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Thermal charging of supercapacitors: a perspective

Abstract: A change in temperature can modify the ion density near the electrode surface, and create a potential difference across a supercapacitor.

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Cited by 61 publications
(52 citation statements)
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“…Supercapacitors are rechargeable energy storage devices with high power densities and long cyclic life, which store charge through one or a combination of two possible mechanisms. [154] Figure 3-7 illustrates a typical electric double-layer capacitor (EDLC) in which the charge storage mechanism involves reversible physical absorption of ions in an electrolyte on the surface of electrodes with high surface area. When a voltage is applied between the two electrodes, positive and negative ions in the electrolyte accumulate at the interface of the electrolyte with the anode and the cathode,…”
Section: Thermal Charging Of Supercapacitorsmentioning
confidence: 99%
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“…Supercapacitors are rechargeable energy storage devices with high power densities and long cyclic life, which store charge through one or a combination of two possible mechanisms. [154] Figure 3-7 illustrates a typical electric double-layer capacitor (EDLC) in which the charge storage mechanism involves reversible physical absorption of ions in an electrolyte on the surface of electrodes with high surface area. When a voltage is applied between the two electrodes, positive and negative ions in the electrolyte accumulate at the interface of the electrolyte with the anode and the cathode,…”
Section: Thermal Charging Of Supercapacitorsmentioning
confidence: 99%
“…Pseudocapacitors use another mechanism to store charges, based on reversible chemical reactions between electrolyte ions and chemically active materials on the electrodes. [154] Another class of supercapacitors called hybrid supercapacitor is merged from the integration of the two aforementioned supercapacitors, which consists of an electric-double layer electrode and a pseudocapacitive electrode. [154,155] Figure 3-7. schematic illustration of an EDLC capacitor.…”
Section: Thermal Charging Of Supercapacitorsmentioning
confidence: 99%
See 2 more Smart Citations
“…The variation between the inner temperature and surface temperature of a supercapacitor was investigated [10] with three dimensional symmetric thermal model based on the heating rate measured during cycling [9] The modeling of increased temperature effect was studied in relation to the charge-discharge current of the supercapacitor [18] which shows that the temperature response is dependent on the current applied. The effect of thermal charging on the supercapacitor by inducing an external heat condition was reported in [19]. The mechanical integrity of lithium ion battery was investigated at cell level with a finite element model for cell compression between flat plates, where the compressive and punch indentation test are usually conducted on a stack layer because single layer with small thickness will produce less accurate result [20].…”
Section: Introductionmentioning
confidence: 99%