Porosity — Metal-organic framework glass stabilizes high-voltage cathodes for efficient lithium-metal batteries

Measurement evidence

Porosity

Metal-organic framework glass stabilizes high-voltage cathodes for efficient lithium-metal batteries · Bai L., Xu Y., Liu Y. et al. · Nature Communications · 2025 · 3484

1 measurement group · 5 results

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

Positron annihilation lifetime spectroscopy (PALS)

Bulk Zn-P-dmbIm MOF Glass · Unknown

PALS at 25 deg C using 22Na source; four-finite lifetime component analysis using LT 9.0.

Temperature
298
Atmosphere
not specified
Geometry
MOF powder cylinder radius 1.5 cm, thickness ~1 mm; MOF Glass film >1 x 1 cm2, thickness ~1 mm
Context
pristine MOF powder and MOF Glass
Measurement source
main p.10-11 · PALS · Supplementary Table 1; Supplementary Fig. 3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
MOF Glass average cavity diameter0.486 nmText
Exact Reported
SI p.5 · Supplementary Fig. 3 · Supplementary Fig. 3
MOF Glass average pore-window diameterMarked as a best value within this paper0.294 nm (2.94 Angstrom)Text
Exact Reported
SI p.5 · Supplementary Fig. 3 · Supplementary Fig. 3
Crystalline MOF pore window noted in main text3.4 Angstrom pore windowText
Rounded Reported
main p.2 · Results and discussion · Supplementary Fig. 1
Zn-P-dmbIm MOF powder average cavity diameter0.556 nmText
Exact Reported
SI p.5 · Supplementary Fig. 3 · Supplementary Fig. 3
Zn-P-dmbIm MOF powder average pore-window diameter0.341 nmText
Exact Reported
SI p.5 · Supplementary Fig. 3 · Supplementary Fig. 3