Porosity — Synthesis and characterization of Fe3O4-supported metal–organic framework MIL-101(Fe) for a highly selective and sensitive hydrogen peroxide electrochemical sensor

Measurement evidence

Porosity

Synthesis and characterization of Fe3O4-supported metal–organic framework MIL-101(Fe) for a highly selective and sensitive hydrogen peroxide electrochemical sensor · Salman F., Zengin A., Celik Kazici H. · Ionics · 2020 · 5221-5232

2 measurement groups · 6 results

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

N2 adsorption-desorption / BET

MIL-101(Fe)@Fe3O4 nanoparticles · Powder

Quantachrome Autosorb-6; BET surface area, pore volume and average pore width

Atmosphere
N2
Context
MIL-101(Fe)@Fe3O4 composite powder
Measurement source
5224-5225 · BET analysis · Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Pore volumeMarked as a best value within this paper0.4596 cm3/gTable
Exact Reported
5225 · BET analysis · Table 1
Average pore widthMarked as a best value within this paper1.9 nmTable
Exact Reported
5225 · BET analysis · Table 1
BET surface areaMarked as a best value within this paper726.8 m2/gTable
Exact Reported
5225 · BET analysis · Table 1

N2 adsorption-desorption / BET

Fe3O4 nanoparticles · Powder

Quantachrome Autosorb-6; BET surface area, pore volume and average pore width

Atmosphere
N2
Context
Fe3O4 component control
Measurement source
5224-5225 · BET analysis · Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Pore volume0.0481 cm3/gTable
Exact Reported
5225 · BET analysis · Table 1
Average pore width3.24 nmTable
Exact Reported
5225 · BET analysis · Table 1
BET surface area25.8 m2/gTable
Exact Reported
5225 · BET analysis · Table 1