Electrical Transport — Heterometallic Actinide-Containing Photoresponsive Metal-Organic Frameworks: Dynamic and Static Tuning of Electronic Properties

Measurement evidence

Electrical Transport

Heterometallic Actinide-Containing Photoresponsive Metal-Organic Frameworks: Dynamic and Static Tuning of Electronic Properties · Martin C.R., Leith G.A., Kittikhunnatham P. et al. · Angewandte Chemie - International Edition · 2021 · 8072-8080

11 measurement groups · 21 results

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

Two-point pressed-pellet conductivity using home-built 2C3PS and Keithley 2636A

I2@Th5U-50% · Powder

10 mg MOF powder pre-dried 20 min in air, pressed in quartz tube; d = 2 mm, l = 1 mm; I-V from -1 to +1 V; dark and after 5 min 365 nm UV where applicable; n = 5 for standard error.

Context
sample-specific
Measurement source
S12 and S35 · Conductivity measurements · Table S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
I2@Th5U-50% conductivity, dark1.04 x 10^-3 S cm^-1standard error 3.51 x 10^-5 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4
I2@Th5U-50% conductivity, under UV1.11 x 10^-3 S cm^-1standard error 1.64 x 10^-5 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4

Two-point pressed-pellet conductivity using home-built 2C3PS and Keithley 2636A

I2@Th-65% · Powder

10 mg MOF powder pre-dried 20 min in air, pressed in quartz tube; d = 2 mm, l = 1 mm; I-V from -1 to +1 V; dark and after 5 min 365 nm UV where applicable; n = 5 for standard error.

Context
sample-specific
Measurement source
S12 and S35 · Conductivity measurements · Table S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
I2@Th-65% conductivity, dark9.55 x 10^-4 S cm^-1standard error 4.48 x 10^-6 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4
I2@Th-65% conductivity, under UV1.12 x 10^-3 S cm^-1standard error 3.06 x 10^-6 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4

Two-point pressed-pellet conductivity using home-built 2C3PS and Keithley 2636A

I2@Th-MOF · Powder

10 mg MOF powder pre-dried 20 min in air, pressed in quartz tube; d = 2 mm, l = 1 mm; I-V from -1 to +1 V; dark and after 5 min 365 nm UV where applicable; n = 5 for standard error.

Context
sample-specific
Measurement source
S12 and S35 · Conductivity measurements · Table S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
I2@Th-MOF conductivity, dark7.41 x 10^-4 S cm^-1standard error 3.70 x 10^-6 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4

Two-point pressed-pellet conductivity using home-built 2C3PS and Keithley 2636A

TCNQ@Th-65% · Powder

10 mg MOF powder pre-dried 20 min in air, pressed in quartz tube; d = 2 mm, l = 1 mm; I-V from -1 to +1 V; dark and after 5 min 365 nm UV where applicable; n = 5 for standard error.

Context
sample-specific
Measurement source
S12 and S35 · Conductivity measurements · Table S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
TCNQ@Th-65% conductivity, dark9.85 x 10^-4 S cm^-1standard error 6.98 x 10^-6 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4
TCNQ@Th-65% conductivity, under UVMarked as a best value within this paper1.53 x 10^-3 S cm^-1standard error 5.58 x 10^-5 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4
TCNQ@Th-65% conductivity modulation under UV55%Text
Rounded Reported
8077 · Results and Discussion · Table S4

Two-point pressed-pellet conductivity using home-built 2C3PS and Keithley 2636A

TCNQ@Th-MOF · Powder

10 mg MOF powder pre-dried 20 min in air, pressed in quartz tube; d = 2 mm, l = 1 mm; I-V from -1 to +1 V; dark and after 5 min 365 nm UV where applicable; n = 5 for standard error.

Context
sample-specific
Measurement source
S12 and S35 · Conductivity measurements · Table S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
TCNQ@Th-MOF conductivity, dark9.66 x 10^-4 S cm^-1standard error 2.33 x 10^-5 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4

Two-point pressed-pellet conductivity using home-built 2C3PS and Keithley 2636A

TCNQ@Zr-MOF · Powder

10 mg MOF powder pre-dried 20 min in air, pressed in quartz tube; d = 2 mm, l = 1 mm; I-V from -1 to +1 V; dark and after 5 min 365 nm UV where applicable; n = 5 for standard error.

Context
sample-specific
Measurement source
S12 and S35 · Conductivity measurements · Table S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
TCNQ@Zr-MOF conductivity, dark9.21 x 10^-4 S cm^-1standard error 8.30 x 10^-6 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4

Two-point pressed-pellet conductivity using home-built 2C3PS and Keithley 2636A

Th-34% · Powder

10 mg MOF powder pre-dried 20 min in air, pressed in quartz tube; d = 2 mm, l = 1 mm; I-V from -1 to +1 V; dark and after 5 min 365 nm UV where applicable; n = 5 for standard error.

Context
sample-specific
Measurement source
S12 and S35 · Conductivity measurements · Table S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Th-34% conductivity, dark3.97 x 10^-5 S cm^-1standard error 1.87 x 10^-7 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4
Th-34% conductivity, under UV4.46 x 10^-5 S cm^-1standard error 8.85 x 10^-8 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4

Two-point pressed-pellet conductivity using home-built 2C3PS and Keithley 2636A

Th5U-50% · Powder

10 mg MOF powder pre-dried 20 min in air, pressed in quartz tube; d = 2 mm, l = 1 mm; I-V from -1 to +1 V; dark and after 5 min 365 nm UV where applicable; n = 5 for standard error.

Context
sample-specific
Measurement source
S12 and S35 · Conductivity measurements · Table S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Th5U-50% conductivity, dark5.21 x 10^-4 S cm^-1standard error 6.22 x 10^-6 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4
Th5U-50% conductivity, under UV5.31 x 10^-4 S cm^-1standard error 4.11 x 10^-6 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4

Two-point pressed-pellet conductivity using home-built 2C3PS and Keithley 2636A

Th5U-MOF · Powder

10 mg MOF powder pre-dried 20 min in air, pressed in quartz tube; d = 2 mm, l = 1 mm; I-V from -1 to +1 V; dark and after 5 min 365 nm UV where applicable; n = 5 for standard error.

Context
sample-specific
Measurement source
S12 and S35 · Conductivity measurements · Table S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Th5U-MOF conductivity, dark4.61 x 10^-4 S cm^-1standard error 3.05 x 10^-6 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4
Th5U-MOF conductivity, under UV4.62 x 10^-4 S cm^-1standard error 1.01 x 10^-6 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4
Th5U-MOF conductivity enhancement relative to Th-MOF31-fold increaseText
Rounded Reported
8077 · Results and Discussion

Two-point pressed-pellet conductivity using home-built 2C3PS and Keithley 2636A

Th-MOF powder · Powder

10 mg MOF powder pre-dried 20 min in air, pressed in quartz tube; d = 2 mm, l = 1 mm; I-V from -1 to +1 V; dark and after 5 min 365 nm UV where applicable; n = 5 for standard error.

Context
sample-specific
Measurement source
S12 and S35 · Conductivity measurements · Table S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Th-MOF conductivity, dark1.46 x 10^-5 S cm^-1standard error 9.17 x 10^-8 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4
Th-MOF conductivity, under UV1.45 x 10^-5 S cm^-1standard error 7.21 x 10^-8 S cm^-1SI Table
Exact Reported
S35 · Table S4 · Table S4

MOF-based FET transfer characteristics

TCNQ@Zr-65% FET · Thin Film

Drain voltage 5 V; gate voltage sweep -10 to +5 V; dark and constant 365 nm UV irradiation; high-powered LED at 2 cm, 700 mA.

Geometry
drop-cast MOF crystals bridging 2 um Ti/Au electrode gap on boron-doped Si/SiO2
Context
model-system application using TCNQ@Zr-65%; Zr-MOF, Zr-65%, and TCNQ@Zr-MOF controls
Measurement source
8078 · Results and Discussion · Figure 4c
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
TCNQ@Zr-65% FET photo-gated responseless negative threshold voltage and increased transconductance after 5 min UV excitationQualitative
Qualitative
8078 · Results and Discussion · Figure 4c
Zr-MOF FET control responseno current changes during gate modulation in dark or under UVQualitative
Qualitative
8078 · Results and Discussion · Figure 4c inset