Porosity — Self-amplifying bimetallic conductive metal-organic framework for sensitive label-free electrochemiluminescence detection of aflatoxin B1

Measurement evidence

Porosity

Self-amplifying bimetallic conductive metal-organic framework for sensitive label-free electrochemiluminescence detection of aflatoxin B1 · Feng R., Fang J., Xu J. et al. · Microchemical Journal · 2025 · 115749

1 measurement group · 7 results

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

nitrogen adsorption-desorption and pore-size distribution analysis

ZnCoMOFs black precipitate/powder · Powder

SI Figure S1 narrative reports Type IV adsorption isotherm, H3 hysteresis loops, low-pressure uptake at P/P0 < 0.1, and pores broadly distributed over 2-184 nm.

Context
pristine ZnCoMOFs
Measurement source
S6 · Figure S1 narrative · Figure S1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
ZnCoMOFs pore-size distributionrelatively dispersed pore size distributionText
Qualitative
SI text p.S5 · Figure S1 narrative · Figure S1
Hysteresis loop typeH3 type hysteresis loopsText
Qualitative
SI text p.S5 · Figure S1 narrative · Figure S1
Nitrogen adsorption isotherm typeType IV adsorption isothermText
Qualitative
SI text p.S5 · Figure S1 narrative · Figure S1
Low-pressure adsorption regionP/P0 < 0.1Text
Approximate
SI text p.S5 · Figure S1 narrative · Figure S1
Pore size distribution upper bound2-184 nmrangeText
Range
SI text p.S5 · Figure S1 narrative · Figure S1
Pore size distribution lower bound2-184 nmrangeText
Range
SI text p.S5 · Figure S1 narrative · Figure S1
Approximate N2 adsorption near P/P0 = 1about 50 cm3/g STP near P/P0 = 1visual estimateFigure Axis
Approximate
S6 · Figure S1 · Figure S1A