Electrical Transport — Conjugated crosslinks boost the conductivity and stability of a single crystalline metal-organic framework

Measurement evidence

Electrical Transport

Conjugated crosslinks boost the conductivity and stability of a single crystalline metal-organic framework · Zhou H.-Q., He Y., Hu J.-Y. et al. · Chemical Communications · 2021 · 187-190

6 measurement groups · 27 results

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

electronic conductivity comparison

ZrBPD-4F4TS oxidised with deficient FeCl3 · Powder

0.5:1 FeCl3/thiophene under-crosslinked sample

Atmosphere
air
Geometry
not specified
Context
under-crosslinked control
Measurement source
PDF p.5 / article p.190 · Main text · Fig. S41
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
electronic conductivity~10^-5 S cm^-1Text
Approximate
PDF p.5 / article p.190 · Main text · Fig. S41

two-probe electronic conductivity with multimeter

activated ZrBPD-4F4TS-Ox · Powder

sample pressed into 1.8 mm diameter glass mould pipe/disc; measured in air; Table S2

Atmosphere
air
Geometry
pressed disc, r=0.9 mm, two iron rods/two probes
Context
crosslinked framework
Measurement source
SI p.S13 and S41 · Conductivity tests / Table S2 · Fig. S40; Table S2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
resistance1.07 kOhmSI Table
Exact Reported
SI p.S41 · Table S2 · Table S2
pellet thickness0.59 mmSI Table
Exact Reported
SI p.S41 · Table S2 · Table S2
electronic conductivityMarked as a best value within this paper2.2 x 10^-3 S cm^-1SI Table
Exact Reported
SI p.S41 · Table S2 · Table S2

two-probe electronic conductivity with multimeter

activated ZrBPD-4F4TS · Powder

sample pressed into 1.8 mm diameter glass mould pipe/disc; measured in air; Table S2

Atmosphere
air
Geometry
pressed disc, r=0.9 mm, two iron rods/two probes
Context
pristine framework
Measurement source
SI p.S13 and S41 · Conductivity tests / Table S2 · Fig. S40; Table S2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
resistance181 kOhmSI Table
Exact Reported
SI p.S41 · Table S2 · Table S2
pellet thickness0.51 mmSI Table
Exact Reported
SI p.S41 · Table S2 · Table S2
electronic conductivity1.1 x 10^-5 S cm^-1SI Table
Exact Reported
SI p.S41 · Table S2 · Table S2

proton conductivity from impedance/Nyquist fitting

H2SO4@ZrBPD-4F4TS-Ox · Powder

90% RH; frequency range 10 MHz to 1 Hz; fitted equivalent circuit in ZView; temperature series

Temperature
313-363
Atmosphere
90% RH
Geometry
pellet; impedance spectroscopy
Context
proton-conducting MOF
Measurement source
SI p.S29 and S41 · Calculation for proton conductivity and Table S3 · Fig. 3; Fig. S28-S29; Table S3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
activation energyMarked as a best value within this paperEa = 0.23 eVFigure Axis
Rounded Reported
SI p.S29 / rendered image p029 · Fig. S28 · Fig. S28
proton conductivity6.53e-4 S cm^-1 at 40 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3
proton conductivity7.63e-4 S cm^-1 at 50 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3
proton conductivity1.28e-3 S cm^-1 at 60 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3
proton conductivity1.36e-3 S cm^-1 at 70 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3
proton conductivity1.62e-3 S cm^-1 at 80 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3
proton conductivityMarked as a best value within this paper1.87e-3 S cm^-1 at 90 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3

proton conductivity from impedance/Nyquist fitting

activated ZrBPD-4F4TS-Ox · Powder

90% RH; frequency range 10 MHz to 1 Hz; fitted equivalent circuit in ZView; temperature series

Temperature
313-363
Atmosphere
90% RH
Geometry
pellet; impedance spectroscopy
Context
proton-conducting MOF
Measurement source
SI p.S27-S28 and S41 · Calculation for proton conductivity and Table S3 · Fig. S25-S27; Table S3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
activation energyEa = 0.73 eVFigure Axis
Rounded Reported
SI p.S28 / rendered image p028 · Fig. S27 · Fig. S27
proton conductivity1.38e-8 S cm^-1 at 40 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3
proton conductivity3.96e-8 S cm^-1 at 50 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3
proton conductivity1.29e-7 S cm^-1 at 60 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3
proton conductivity3.72e-7 S cm^-1 at 75 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3
proton conductivity4.97e-7 S cm^-1 at 80 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3
proton conductivity5.63e-7 S cm^-1 at 90 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3

proton conductivity from impedance/Nyquist fitting

activated ZrBPD-4F4TS · Powder

90% RH; frequency range 10 MHz to 1 Hz; fitted equivalent circuit in ZView; temperature series

Temperature
313-363
Atmosphere
90% RH
Geometry
pellet; impedance spectroscopy
Context
proton-conducting MOF
Measurement source
SI p.S26 and S41 · Calculation for proton conductivity and Table S3 · Fig. S22-S24; Table S3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
activation energyEa = 0.59 eVFigure Axis
Rounded Reported
SI p.S27 / rendered image p027 · Fig. S24 · Fig. S24
proton conductivity4.11e-6 S cm^-1 at 40 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3
proton conductivity1.81e-5 S cm^-1 at 50 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3
proton conductivity3.40e-5 S cm^-1 at 60 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3
proton conductivity4.53e-5 S cm^-1 at 70 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3
proton conductivity5.99e-5 S cm^-1 at 80 deg CSI Table
Exact Reported
SI p.S41 · Table S3 · Table S3