Electrical Transport — High-performance hybrid supercapacitors enabled by CoTe@CoFeTe double-shelled nanocubes

Measurement evidence

Electrical Transport

High-performance hybrid supercapacitors enabled by CoTe@CoFeTe double-shelled nanocubes · Gholami Shamami H., Mohammadi Zardkhoshoui A., Hosseiny Davarani S.S. · Nanoscale · 2024 · 4591-4602

1 measurement group · 6 results

Reported values remain attached to the sample, method, conditions, extraction quality and source location that produced them.

Electrochemical impedance spectroscopy (EIS)

CoTe@CoFeTe working electrode · Electrode

Room-temperature Nyquist plots for CoTe@CoFeTe and Co3O4@CoFe2O4 electrodes.

Atmosphere
6 M KOH electrochemical cell
Geometry
three-electrode electrode impedance
Context
target versus oxide control
Measurement source
4595 · 3 Results and discussion · Fig. 3d
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CoTe@CoFeTe Rct after cycling0.26 ohm after stability test0.26 ohmText
Exact Reported
4598 · 3 Results and discussion · Fig. S14
CoTe@CoFeTe Rs after cycling0.20 ohm after stability test0.2 ohmText
Exact Reported
4598 · 3 Results and discussion · Fig. S14
CoTe@CoFeTe charge-transfer resistance RctMarked as a best value within this paper0.20 ohm0.2 ohmText
Exact Reported
4595 · 3 Results and discussion · Fig. 3d
Co3O4@CoFe2O4 charge-transfer resistance Rct0.30 ohm0.3 ohmText
Exact Reported
4595 · 3 Results and discussion · Fig. 3d
CoTe@CoFeTe internal resistance RsMarked as a best value within this paper0.15 ohm0.15 ohmText
Exact Reported
4595 · 3 Results and discussion · Fig. 3d
Co3O4@CoFe2O4 internal resistance Rs0.28 ohm0.28 ohmText
Exact Reported
4595 · 3 Results and discussion · Fig. 3d