Electrical Transport — Impact of the Channel Length in Nanoporous Electric Double-Layer Capacitors on the Charge Transport Explored by Metal-Organic Framework Films

Measurement evidence

Electrical Transport

Impact of the Channel Length in Nanoporous Electric Double-Layer Capacitors on the Charge Transport Explored by Metal-Organic Framework Films · Liu Y., Chandresh A., Heinke L. · ACS Physical Chemistry Au · 2025 · 266-273

1 measurement group · 3 results

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

Literature diffusion-coefficient comparison for electrolyte ions

Cu3(HHTP)2 SURMOF synthesis-cycle series · Thin Film

Diffusion coefficients cited for 3 M KCl and [BMIM][TFSI] at room temperature to rationalise ion-transport limitations.

Temperature
298
Geometry
electrolyte transport context for MOF pore charging
Context
electrolyte-dependent transport in pristine conductive MOF electrode
Measurement source
271 · Results and Discussion
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Diffusion coefficient of [BMIM]+ in [BMIM][TFSI]1.74 x 10-11 m2 s-1Text
Exact Reported
271 · Results and Discussion
Diffusion coefficient of 3 M KCl at room temperatureapproximately 2 x 10-9 m2 s-1Text
Approximate
271 · Results and Discussion
Diffusion coefficient of [TFSI]- in [BMIM][TFSI]1.03 x 10-11 m2 s-1Text
Exact Reported
271 · Results and Discussion