Porosity — Conductive Metal–Organic Framework Nanowire Array Electrodes for High-Performance Solid-State Supercapacitors

Measurement evidence

Porosity

Conductive Metal–Organic Framework Nanowire Array Electrodes for High-Performance Solid-State Supercapacitors · Li W.-H., Ding K., Tian H.-R. et al. · Advanced Functional Materials · 2017 · 1702067

2 measurement groups · 4 results

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

N2 sorption and BET/NLDFT analysis

Cu-CAT crystallite powder · Powder

N2 sorption at 77 K after methanol reflux overnight three times and vacuum pretreatment at 100 deg C for 10 h; BET and NLDFT pore-size analysis.

Temperature
77
Atmosphere
N2
Geometry
activated powder
Context
Pristine Cu-CAT framework
Measurement source
p.3, p.6 · Morphology and Structural Analysis; Characterization · Figure 2d; Figure S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cu-CAT BET surface area540 m2 g-1Text
Exact Reported
p.3 · Morphology and Structural Analysis · Figure 2d
Cu-CAT powder BET specific surface area540 m2 g-1SI Table
Exact Reported
p.15 · Table S1 · Table S1
Cu-CAT pore size from Table S11.8 nmSI Table
Exact Reported
p.15 · Table S1 · Table S1

Water vapour sorption

Cu-CAT crystallite powder · Powder

Water vapour sorption at room temperature; saturation pressure P0 = 3.14 kPa in SI caption.

Atmosphere
water vapour
Context
Pristine Cu-CAT framework
Measurement source
p.6 · Figures, Tables and related discussion · Figure S5
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cu-CAT water wettability/accessibilitycan be wetted and accessed by aqueous electrolytes easilyText
Qualitative
p.3 · Morphology and Structural Analysis · Figure S5