Porosity — Efficient and tunable one-dimensional charge transport in layered lanthanide metal–organic frameworks

Measurement evidence

Porosity

Efficient and tunable one-dimensional charge transport in layered lanthanide metal–organic frameworks · Skorupskii G., Trump B.A., Kasel T.W. et al. · Nature Chemistry · 2020 · 131-136

4 measurement groups · 13 results

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

N2 adsorption isotherm and BET fit

HoHHTP powder · Powder

Measured at 77 K after activation at 90 deg C under dynamic vacuum until outgas rate <2 mTorr/min; BET fits satisfied consistency criteria.

Temperature
77
Atmosphere
N2 adsorption; sample handled in dry N2 before measurement
Geometry
ASAP 2020 Plus gas sorption tube
Context
pristine LnHHTP powder
Measurement source
SI pp.5, 12 · Nitrogen adsorption measurements · Supplementary Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
BET surface area208SI Table
Exact Reported
SI p.12 · Supplementary Table 1 · Supplementary Table 1
BET C parameter980SI Table
Exact Reported
SI p.12 · Supplementary Table 1 · Supplementary Table 1
BET monolayer capacity Qm47.8SI Table
Exact Reported
SI p.12 · Supplementary Table 1 · Supplementary Table 1

N2 adsorption isotherm and BET fit

LaHHTP powder · Powder

Measured at 77 K after activation at 90 deg C under dynamic vacuum until outgas rate <2 mTorr/min; BET fits satisfied consistency criteria.

Temperature
77
Atmosphere
N2 adsorption; sample handled in dry N2 before measurement
Geometry
ASAP 2020 Plus gas sorption tube
Context
pristine LnHHTP powder
Measurement source
SI pp.5, 12 · Nitrogen adsorption measurements · Supplementary Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
BET surface area325SI Table
Exact Reported
SI p.12 · Supplementary Table 1 · Supplementary Table 1
BET C parameter765SI Table
Exact Reported
SI p.12 · Supplementary Table 1 · Supplementary Table 1
BET monolayer capacity Qm74.6SI Table
Exact Reported
SI p.12 · Supplementary Table 1 · Supplementary Table 1

N2 adsorption isotherm and BET fit

NdHHTP powder · Powder

Measured at 77 K after activation at 90 deg C under dynamic vacuum until outgas rate <2 mTorr/min; BET fits satisfied consistency criteria.

Temperature
77
Atmosphere
N2 adsorption; sample handled in dry N2 before measurement
Geometry
ASAP 2020 Plus gas sorption tube
Context
pristine LnHHTP powder
Measurement source
SI pp.5, 12 · Nitrogen adsorption measurements · Supplementary Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
experimental pore diameter from N2 adsorption/BJH~1.6 nm for all four materialsText
Approximate
main p.132 · Synthesis and structural characterization · Supplementary Fig. 10
BET surface areaMarked as a best value within this paper513SI Table
Exact Reported
SI p.12 · Supplementary Table 1 · Supplementary Table 1
BET C parameter1443SI Table
Exact Reported
SI p.12 · Supplementary Table 1 · Supplementary Table 1
BET monolayer capacity Qm117.9SI Table
Exact Reported
SI p.12 · Supplementary Table 1 · Supplementary Table 1

N2 adsorption isotherm and BET fit

YbHHTP powder · Powder

Measured at 77 K after activation at 90 deg C under dynamic vacuum until outgas rate <2 mTorr/min; BET fits satisfied consistency criteria.

Temperature
77
Atmosphere
N2 adsorption; sample handled in dry N2 before measurement
Geometry
ASAP 2020 Plus gas sorption tube
Context
pristine LnHHTP powder
Measurement source
SI pp.5, 12 · Nitrogen adsorption measurements · Supplementary Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
BET surface area452SI Table
Exact Reported
SI p.12 · Supplementary Table 1 · Supplementary Table 1
BET C parameter1021SI Table
Exact Reported
SI p.12 · Supplementary Table 1 · Supplementary Table 1
BET monolayer capacity Qm103.8SI Table
Exact Reported
SI p.12 · Supplementary Table 1 · Supplementary Table 1