Porosity — Novel aptasensing strategy for efficiently quantitative analyzing Staphylococcus aureus based on defective copper-based metal–organic framework

Measurement evidence

Porosity

Novel aptasensing strategy for efficiently quantitative analyzing Staphylococcus aureus based on defective copper-based metal–organic framework · Tian J.-Y., Liu X., Zhang S. et al. · Food Chemistry · 2023 · 134357

2 measurement groups · 7 results

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

N2 adsorption-desorption at 77 K; DFT pore-size distribution

Cu-H4EBTC powder · Powder

Nitrogen sorption isotherm and calculated pore-size distribution for Cu-H4EBTC control.

Temperature
77
Atmosphere
N2
Context
pristine control Cu-MOF powder
Measurement source
p005 / article p.5 · 3.1. Basic characterizations · Fig. 1i / Table S1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average pore diameter of Cu-H4EBTCMarked as a best value within this paper0.906 nm0.906 nmText
Exact Reported
p005 / article p.5 · 3.1. Basic characterizations · Fig. S5
specific surface area of Cu-H4EBTCMarked as a best value within this paper1894.9 m2/g1894.9 m2/gSI Table
Exact Reported
S11 / rendered SI p011 · S2. Basic characterizations of Cu-MOFs · Table S1

N2 adsorption-desorption at 77 K; DFT pore-size distribution

nattier blue ML-Cu2O@Cu-MOF powder · Powder

Nitrogen sorption isotherm and calculated pore-size distribution for ML-Cu2O@Cu-MOF.

Temperature
77
Atmosphere
N2
Context
target composite MOF powder
Measurement source
p005 / article p.5 · 3.1. Basic characterizations · Fig. 1i / Table S1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
specific surface area of Cu-BDC598.52 m2/g598.52 m2/gSI Table
Exact Reported
S11 / rendered SI p011 · S2. Basic characterizations of Cu-MOFs · Table S1
specific surface area of Cu-H3BTC1259.90 m2/g1259.9 m2/gSI Table
Exact Reported
S11 / rendered SI p011 · S2. Basic characterizations of Cu-MOFs · Table S1
average pore diameter of ML-Cu2O@Cu-MOF0.63 nm0.63 nmText
Exact Reported
p005 / article p.5 · 3.1. Basic characterizations · Fig. S5
specific surface area of ML-Cu2O@Cu-MOF963.54 m2/g963.54 m2/gSI Table
Exact Reported
S11 / rendered SI p011 · S2. Basic characterizations of Cu-MOFs · Table S1
nitrogen sorption isotherm typetypical type I isotherms; drastic uptake at P/P0 < 0.05; small microporous structuresText
Qualitative
p005 / article p.5 · 3.1. Basic characterizations · Fig. 1i