Electrical Transport — Defect Engineering to Tailor Metal Vacancies in 2D Conductive Metal-Organic Frameworks: An Example in Electrochemical Sensing

Measurement evidence

Electrical Transport

Defect Engineering to Tailor Metal Vacancies in 2D Conductive Metal-Organic Frameworks: An Example in Electrochemical Sensing · Luo Y., Wu Y., Braun A. et al. · ACS Nano · 2022 · 20820-20830

4 measurement groups · 9 results

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

four-probe van der Pauw conductivity

Ag-BHT film prepared at pH 2 · Thin Film

Room-temperature conductivity for Ag-BHT films prepared at pH 2, 1, and 0.

Temperature
room temperature
Geometry
thin films
Context
pristine framework pH series
Measurement source
20822 · Results and Discussion · Figure 2f
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Ag-BHT pH 0 room-temperature conductivityMarked as a best value within this paperapproximately 37 S cm-1 from Figure 2fvisual readFigure Axis
Approximate
20822 · Results and Discussion · Figure 2f
Ag-BHT pH 1 room-temperature conductivityapproximately 16 S cm-1 from Figure 2fvisual readFigure Axis
Approximate
20822 · Results and Discussion · Figure 2f
Ag-BHT pH 2 room-temperature conductivityapproximately 3 S cm-1 from Figure 2fvisual readFigure Axis
Approximate
20822 · Results and Discussion · Figure 2f

four-probe van der Pauw conductivity

Cu-BHT film prepared at pH 2 · Thin Film

Room-temperature conductivity for Cu-BHT films prepared at pH 2, 1, and 0; three samples per pH, four positions per film.

Temperature
room temperature
Geometry
thin films
Context
pristine framework pH series
Measurement source
20824-20825 · Results and Discussion · Figure 2d
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cu-BHT pH 0 room-temperature conductivityMarked as a best value within this paperapproximately 625 S cm-1 from Figure 2dvisual read; bars near 600-650 S cm-1Figure Axis
Approximate
20822 · Results and Discussion · Figure 2d
Cu-BHT pH 1 room-temperature conductivityapproximately 500 S cm-1 from Figure 2dvisual read; bars near 485-505 S cm-1Figure Axis
Approximate
20822 · Results and Discussion · Figure 2d
Cu-BHT pH 2 room-temperature conductivityapproximately 410 S cm-1 from Figure 2dvisual read; bars span roughly 390-425 S cm-1Figure Axis
Approximate
20822 · Results and Discussion · Figure 2d

temperature-dependent four-probe conductivity

Cu-BHT film prepared at pH 2 · Thin Film

Conductivity of Cu-BHT films measured as a function of increasing temperature; log(sigma) vs reciprocal temperature plotted.

Geometry
thin films
Context
pristine framework pH series
Measurement source
20825 · Results and Discussion · Figure S15
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource

four-probe van der Pauw conductivity

Ni-BHT film prepared at pH 2 · Thin Film

Room-temperature conductivity for Ni-BHT films prepared at pH 2, 1, and 0.

Temperature
room temperature
Geometry
thin films
Context
pristine framework pH series
Measurement source
20822 · Results and Discussion · Figure 2e
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Ni-BHT pH 0 room-temperature conductivityMarked as a best value within this paperapproximately 0.145 S cm-1 from Figure 2evisual readFigure Axis
Approximate
20822 · Results and Discussion · Figure 2e
Ni-BHT pH 1 room-temperature conductivityapproximately 0.097 S cm-1 from Figure 2evisual readFigure Axis
Approximate
20822 · Results and Discussion · Figure 2e
Ni-BHT pH 2 room-temperature conductivityapproximately 0.045 S cm-1 from Figure 2evisual readFigure Axis
Approximate
20822 · Results and Discussion · Figure 2e