Porosity — Superior Charge Transport in Ni-Diamine Conductive MOFs

Measurement evidence

Porosity

Superior Charge Transport in Ni-Diamine Conductive MOFs · Wang J., Chen T., Jeon M. et al. · Journal of the American Chemical Society · 2024 · 20500-20507

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 / BJH

Pristine Cu3(HITT)2 black powder · Powder

Micromeritics ASAP 2020; liquid nitrogen bath at 77 K; degassed at 55 deg C overnight for Figure S22.

Temperature
77
Atmosphere
N2
Measurement source
30 · Figure captions · Figure S22
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
BET apparent surface areaMarked as a best value within this paper767.5632 m²/gCaption
Exact Reported
30 · Figure captions · Figure S22
BJH pore size distribution maximumaround 1.8 nmCaption
Approximate
31 · Figure captions · Figure S24

N2 adsorption-desorption / BET / BJH

Pristine Ni3(HITT)2 black powder · Powder

Micromeritics ASAP 2020; liquid nitrogen bath at 77 K; degassed at 120 deg C overnight for Figure S21.

Temperature
77
Atmosphere
N2
Measurement source
30 · Figure captions · Figure S21
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
BET apparent surface areaMarked as a best value within this paper895.9132 m²/gCaption
Exact Reported
30 · Figure captions · Figure S21
BJH pore size distribution maximumaround 1.8 nmCaption
Approximate
31 · Figure captions · Figure S23