Electrical Transport — Mn2(2,5-disulfhydrylbenzene-1,4-dicarboxylate): A microporous metal-organic framework with infinite (-Mn-S-)∞ chains and high intrinsic charge mobility

Measurement evidence

Electrical Transport

Mn2(2,5-disulfhydrylbenzene-1,4-dicarboxylate): A microporous metal-organic framework with infinite (-Mn-S-)∞ chains and high intrinsic charge mobility · Sun L., Miyakai T., Seki S. et al. · Journal of the American Chemical Society · 2013 · 8185-8188

6 measurement groups · 12 results

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

Combined FP-TRMC and TOF quantum-efficiency analysis

Activated 1/PMMA FP-TRMC film · Thin Film

FP-TRMC phi-sum-mu divided by TOF-derived carrier generation efficiency.

Temperature
298
Atmosphere
ambient for FP-TRMC
Geometry
Activated MOF/PMMA film; TOF device used for quantum efficiency
Context
Composite film used to infer intrinsic framework mobility
Measurement source
main p.8187 · Main text, transport · Figure 4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Charge mobility from combined FP-TRMC/TOFMarked as a best value within this paper0.01 cm2 V-1 s-1Text
Exact Reported
main p.8187 · Main text, transport · Figure 4

Combined FP-TRMC and TOF quantum-efficiency analysis

Methanol-exchanged 1/PMMA FP-TRMC film · Thin Film

FP-TRMC phi-sum-mu divided by TOF-derived carrier generation efficiency.

Temperature
298
Atmosphere
ambient for FP-TRMC
Geometry
MOF/PMMA film; TOF device used for quantum efficiency
Context
Composite film used to infer intrinsic framework mobility
Measurement source
main p.8187 · Main text, transport · Figure 4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Charge delocalisation length in Mn-S units8-12 Mn-S unitsrange 8-12Text
Range
main p.8187 · Main text, transport
Charge-carrier displacement length per microwave period2-3 nmrange 2-3Text
Range
main p.8187 · Main text, transport
Charge mobility from combined FP-TRMC/TOFMarked as a best value within this paper0.02 cm2 V-1 s-1Text
Exact Reported
main p.8187 · Main text, transport · Figure 4

Flash-photolysis time-resolved microwave conductivity (FP-TRMC)

Activated 1/PMMA FP-TRMC film · Thin Film

25 deg C ambient; 355 nm Nd:YAG excitation; 1.4e16 photons/cm2 per pulse; microwave power 3 mW and frequency about 9.1 GHz.

Temperature
298
Atmosphere
ambient
Geometry
50/50 wt% activated MOF/PMMA film on quartz in resonant microwave cavity
Context
Composite film containing activated framework
Measurement source
SI p.S3 · FP-TRMC measurements · Figure 4a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Maximum FP-TRMC phi-sum-mu2 x 10^-5 cm2 V-1 s-1Text
Rounded Reported
main p.8187 · Main text, transport · Figure 4a

Flash-photolysis time-resolved microwave conductivity (FP-TRMC)

Methanol-exchanged 1/PMMA FP-TRMC film · Thin Film

25 deg C ambient; 355 nm Nd:YAG excitation; 1.4e16 photons/cm2 per pulse; microwave power 3 mW and frequency about 9.1 GHz.

Temperature
298
Atmosphere
ambient
Geometry
50/50 wt% MOF/PMMA film on quartz in resonant microwave cavity
Context
Composite film containing methanol-exchanged framework
Measurement source
SI p.S3 · FP-TRMC measurements · Figure 4a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Maximum FP-TRMC phi-sum-mu2 x 10^-5 cm2 V-1 s-1Text
Rounded Reported
main p.8187 · Main text, transport · Figure 4a

Time-of-flight transient current

Activated 1/PMMA TOF device · Electrode

355 nm excitation; 1.9e14 photons/cm2 per pulse; 10 kOhm terminating resistance; applied bias 3e4 V/cm.

Geometry
50/50 wt% activated MOF/PMMA film between 50 nm Al and 30 nm Au electrodes on silicon wafer
Context
Composite device containing activated framework
Measurement source
SI p.S3-S4 · TOF measurements · Figures 4b,S5
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Figure S5 activated first-component mobility rangeapproximately 0.0007-0.002 cm2 V-1 s-1visual rangeVisual Estimate
Approximate
SI p.S12 · Figure S5 · Figure S5c
TOF long-range mobility at E = 0 V/cm0.001 cm2 V-1 s-1Text
Exact Reported
main p.8187 · Main text, transport · Figure S5
TOF-derived carrier generation quantum efficiencyMarked as a best value within this paper1.4 x 10^-3Text
Exact Reported
main p.8187 · Main text, transport · Figure 4b

Time-of-flight transient current

Methanol-exchanged 1/PMMA TOF device · Electrode

355 nm excitation; 1.9e14 photons/cm2 per pulse; 10 kOhm terminating resistance; applied bias 3e4 V/cm.

Geometry
50/50 wt% MOF/PMMA film between 50 nm Al and 30 nm Au electrodes on silicon wafer
Context
Composite device containing methanol-exchanged framework
Measurement source
SI p.S3-S4 · TOF measurements · Figures 4b,S5
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Figure S5 methanol-exchanged first-component mobility rangeapproximately 0.001-0.004 cm2 V-1 s-1visual rangeVisual Estimate
Approximate
SI p.S12 · Figure S5 · Figure S5c
Figure S5 second-component mobility scaleapproximately 1e-5 to 1e-4 cm2 V-1 s-1visual rangeVisual Estimate
Approximate
SI p.S12 · Figure S5 · Figure S5c
TOF-derived carrier generation quantum efficiencyMarked as a best value within this paper9.7 x 10^-4Text
Exact Reported
main p.8187 · Main text, transport · Figure 4b