Porosity — Surface Structure Construction of Fibers in a Conductive Metal-Organic Framework/Metal/Cotton Electrode for Flexible Textile Supercapacitors

Measurement evidence

Porosity

Surface Structure Construction of Fibers in a Conductive Metal-Organic Framework/Metal/Cotton Electrode for Flexible Textile Supercapacitors · Liu Y.-N., Feng L.-J., Bian S.-W. · ACS Applied Electronic Materials · 2022 · 4595-4604

1 measurement group · 4 results

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

Gas sorption isotherm and BJH pore-size distribution

CPAMOF Cu-MOF/Au/cotton electrode · Electrode

Pore structure tested using JWGB-JK122W sorption analyser; isotherm and BJH pore-size distribution shown.

Geometry
Composite textile electrode.
Context
Conductive-MOF composite target electrode compared with cotton fabric.
Measurement source
4596 · 2.4 Material Characterization · Figure 2c,d
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CPAMOF adsorbed volume at relative pressure near 1about 24 cm3 g-1 at p/p0 approximately 1.0visual estimate from plotFigure Axis
Approximate
4597 · Results and Discussion · Figure 2c
Dominant BJH pore-size peakabout 4 nmvisual estimate from logarithmic pore-size axisFigure Axis
Approximate
4597 · Results and Discussion · Figure 2d
CPAMOF specific surface area estimated from 100-fold increaseMarked as a best value within this paperincreased by 100 times relative to 0.3 m2 g-1 cotton fabricCalculated From Reported
Approximate
4598 · Results and Discussion · Figure 2c,d
Cotton fabric specific surface area0.3 m2 g-1Text
Exact Reported
4598 · Results and Discussion · Figure 2c,d