Porosity — 3D Co-doped Ni-based conductive MOFs modified electrochemical sensor for highly sensitive detection of L-tryptophan

Measurement evidence

Porosity

3D Co-doped Ni-based conductive MOFs modified electrochemical sensor for highly sensitive detection of L-tryptophan · Huang W., Chen Y., Wu L. et al. · Talanta · 2022 · 123596

2 measurement groups · 4 results

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

N2 adsorption/desorption, BET and BJH

Co-Ni-MOFs-1% powder · Powder

N2 sorption at 77 K; samples activated under vacuum at 150 C for 4 h.

Temperature
77
Atmosphere
N2 sorption after vacuum degassing
Context
Co-doped target powder
Measurement source
3-4 · 3.1.2 · Fig. S2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
BET surface area of Co-Ni-MOFs-1%Marked as a best value within this paper125 m2/gText
Rounded Reported
3-4 · 3.1.2 · Fig. S2
Total pore volume of Co-Ni-MOFs-1%Marked as a best value within this paper0.453 cm3/gText
Exact Reported
3-4 · 3.1.2 · Fig. S2

N2 adsorption/desorption, BET and BJH

Ni-MOFs powder · Powder

N2 sorption at 77 K; samples activated under vacuum at 150 C for 4 h.

Temperature
77
Atmosphere
N2 sorption after vacuum degassing
Context
pristine Ni-MOF powder
Measurement source
3 · 2.2 · Fig. S2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
BET surface area of Ni-MOFs85 m2/gText
Rounded Reported
3-4 · 3.1.2 · Fig. S2
Total pore volume of Ni-MOFs0.218 cm3/gText
Exact Reported
3-4 · 3.1.2 · Fig. S2