Porosity — Stacked conductive metal–organic framework nanorods for high-performance vacuum electronic devices

Measurement evidence

Porosity

Stacked conductive metal–organic framework nanorods for high-performance vacuum electronic devices · Guan Z., Li J., Wu H. et al. · Ceramics International · 2022 · 34092-34097

1 measurement group · 5 results

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

N2 adsorption-desorption / BET analysis (Autosorb IQ, 77 K; NLDFT pore-size modelling)

Cu-CAT rough nanorods · Unknown

Nitrogen sorption and pore-size distribution of Cu-CAT nanorods, reported through supplementary Figures S4a-b.

Temperature
77
Atmosphere
N2 sorption
Context
Pristine Cu-CAT nanorods.
Measurement source
text-only SI · Characterizations · Figure S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
N2 sorption measurement temperature77 KText
Exact Reported
text-only SI · Characterizations · Figure S4
BET specific surface area229 m2/gText
Exact Reported
4 / p004 · Results and discussion · Figures S4a-b
Approximate N2 uptake near P/P0 = 1about 230 cm3/g at P/P0 about 1.0Visual Estimate
Approximate
7 / p007 · Figure S4 · Figure S4a
Approximate secondary pore-distribution featurebroad feature centred around 4-4.5 nmVisual Estimate
Approximate
7 / p007 · Figure S4 · Figure S4b
Pore size distribution0.9-1.2 nmText
Range
4 / p004 · Results and discussion · Figures S4a-b