Porosity — A novel 2D conductive MOF nanobelts for highly efficient electrosynthesis of hydrogen peroxide

Measurement evidence

Porosity

A novel 2D conductive MOF nanobelts for highly efficient electrosynthesis of hydrogen peroxide · Feng Q., Wang W., Yang X. et al. · Nano Research · 2025 · 94907439

1 measurement group · 5 results

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

N2 adsorption-desorption and BET analysis

Ni-PTC-60 · Powder

ASAP-2460-4N; samples degassed at 423 K for 12 h; BET fit from 0.05-0.25 relative pressure.

Temperature
423 K degassing
Atmosphere
N2 adsorption
Context
pristine powders
Measurement source
1 · 2.1 Characterizations · Figure S7; Table S5
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Ni-PTC-25 BET surface area76.2 m2 g-1SI Table
Exact Reported
8 · Table S5 · Table S5
Ni-PTC-60 BET surface area80.5 m2 g-1SI Table
Exact Reported
8 · Table S5 · Table S5
Ni-PTC-80 BET surface areaMarked as a best value within this paper83.0 m2 g-1SI Table
Exact Reported
8 · Table S5 · Table S5
Ni-PTC-60 average pore diameterMarked as a best value within this paper1.31 nmSI Table
Exact Reported
8 · Table S5 · Table S5
Ni-PTC-60 pore volumeMarked as a best value within this paper0.275 cm3 g-1SI Table
Exact Reported
8 · Table S5 · Table S5