Porosity — Conductive NiCo bimetal-organic framework nanorods with conductivity-enhanced electrochemiluminescence for constructing biosensing platform

Measurement evidence

Porosity

Conductive NiCo bimetal-organic framework nanorods with conductivity-enhanced electrochemiluminescence for constructing biosensing platform · Yang Y., Zhang J.-L., Liang W.-B. et al. · Sensors and Actuators B: Chemical · 2022 · 131802

2 measurement groups · 1 results

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

Nitrogen adsorption-desorption

NiCo-HHTP nanorods · Powder

N2 adsorption-desorption measurements at 77.3 K after outgassing under vacuum at 60 C for 24 h; pore size reported for NiCo-HHTP.

Temperature
77.3
Atmosphere
N2
Context
Pristine NiCo-HHTP porosity
Measurement source
3 · 3.1 Microstructure of NiCo-HHTP nanorods · Fig. S7
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
NiCo-HHTP pore size~1.7 nmText
Approximate
3 · 3.1 Microstructure of NiCo-HHTP nanorods · Fig. S7

Nitrogen adsorption-desorption

Ni-HHTP monometallic MOF control · Powder

N2 sorption isotherms and pore-size distribution of Ni-HHTP measured at 77 K; instrument section states measurements at 77.3 K after vacuum outgassing at 60 C for 24 h.

Temperature
77.3
Atmosphere
N2
Context
Pristine Ni-HHTP control porosity
Measurement source
S10 · S-2.6 N2 sorption measurement · Fig. S7A-B
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource