Microscopy Morphology — Anisotropic Redox Conductivity within a Metal-Organic Framework Material

Measurement evidence

Microscopy Morphology

Anisotropic Redox Conductivity within a Metal-Organic Framework Material · Goswami S., Hod I., Duan J.D. et al. · Journal of the American Chemical Society · 2019 · 17696-17702

2 measurement groups · 5 results

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

Scanning electron microscopy

EPD NU-1000 thin film on ZnO-coated FTO · Electrode

Hitachi SU8030 SEM; samples coated with 9 nm OsO4.

Geometry
top-view and cross-section film microscopy
Context
pristine NU-1000 thin film on electrode substrate
Measurement source
3 · Results and Discussion · Figure 4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
EPD crystallite length3.0 um annotation in Figure S3BVisual Estimate
Approximate
5 · Figure S3 · Figure S3B
EPD top-view crystallite orientationAlmost none of the crystallites are standing vertical to the electrode surface.Caption
Qualitative
11 · Figure S9 caption · Figure S9
EPD film thickness0.8 um annotation in Figure S3BVisual Estimate
Approximate
5 · Figure S3 · Figure S3B

Scanning electron microscopy

Solvothermal NU-1000 thin film on ZnO-coated FTO · Electrode

Hitachi SU8030 SEM; samples coated with 9 nm OsO4.

Geometry
top-view and cross-section film microscopy
Context
pristine NU-1000 thin film on electrode substrate
Measurement source
3 · Instrumentation · Figures 4, S3, S9
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Solvothermal top-view crystallite orientationMajority of crystallites standing vertical; several tilted or slanting; no horizontal rods detected with respect to electrode surface.Caption
Qualitative
11 · Figure S9 caption · Figure S9
Solvothermal film/crystallite height2.7 um annotation in Figure S3AVisual Estimate
Approximate
5 · Figure S3 · Figure S3A