Porosity — Ultra-Stable Metal-Organic Framework with Concurrent High Proton Conductivity and Fluorescence Sensing for Nitrobenzene

Measurement evidence

Porosity

Ultra-Stable Metal-Organic Framework with Concurrent High Proton Conductivity and Fluorescence Sensing for Nitrobenzene · Lu Y.-B., Liao Y.-Q., Dong L. et al. · Chemistry of Materials · 2021 · 7858-7868

2 measurement groups · 3 results

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

PLATON void calculation from crystal structure

crystal-structure model of compound 1 · Model

void volume and porosity per unit cell calculated along b direction

Geometry
crystallographic model
Context
pristine framework model
Measurement source
p003 / 7860 · Structure Description and Discussion · Figure 1c
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
PLATON porosity2.8% per unit cellText
Rounded Reported
p003 / 7860 · Structure Description and Discussion · Figure 1c
PLATON void volumeca. 20.5 Å3Text
Approximate
p003 / 7860 · Structure Description and Discussion · Figure 1c

water vapour adsorption

yellow block single crystals of compound 1 · Single Crystal

water vapour adsorption of compound 1 measured at different relative humidities; plotted as mass uptake versus P/P0

Atmosphere
water vapour
Geometry
powder / crystalline MOF
Context
pristine porous framework
Measurement source
p004 / 7861 · Proton Conduction · Figure S3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
water vapour adsorption at P/P0 = 1approximately 7% at P/P0 = 1Text
Approximate
p004 / 7861 · Proton Conduction · Figure S3