Microscopy Morphology — Stacked conductive metal–organic framework nanorods for high-performance vacuum electronic devices

Measurement evidence

Microscopy Morphology

Stacked conductive metal–organic framework nanorods for high-performance vacuum electronic devices · Guan Z., Li J., Wu H. et al. · Ceramics International · 2022 · 34092-34097

3 measurement groups · 4 results

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

Scanning electron microscopy (SEM; ZEISS Sigma300)

Cu-CAT nanorods grown on graphite paper · Electrode

SEM images of graphite paper and Cu-CAT nanorods grown on graphite paper.

Context
Composite Cu-CAT@GP morphology with graphite paper substrate control.
Measurement source
2-3 / p002-p003 · Results and discussion · Figure 1c-e
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cu-CAT nanorod length after 24 h200 nmText
Rounded Reported
3 / p003 · Results and discussion · Figure 1e

Scanning electron microscopy (SEM; ZEISS Sigma300)

Cu-CAT@GP growth-time series · Electrode

SEM images of Cu-CAT grown on graphite paper under the same hydrothermal conditions for 3 h, 5 h and 7 h.

Context
Composite Cu-CAT@GP growth-time series.
Measurement source
text-only SI · Figure S1 caption · Figure S1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Hydrothermal reaction times imaged by SEM3 h, 5 h and 7 hCaption
Exact Reported
text-only SI · Figure S1 caption · Figure S1

Transmission electron microscopy (TEM; TECNAI G2-F20)

Cu-CAT rough nanorods · Unknown

TEM and high-resolution TEM of Cu-CAT rough nanorods.

Context
Pristine Cu-CAT nanorods.
Measurement source
3 / p003 · Results and discussion · Figure 2a-b
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
TEM lattice spacing for Cu-CAT (002)0.336 nmText
Exact Reported
3 / p003 · Results and discussion · Figure 2b
Cu-CAT rod diameterapproximately 45 nmText
Approximate
3 / p003 · Results and discussion · Figure 2a