Diffraction Structure — Creating Dual Active Sites in Conductive Metal-Organic Frameworks for Efficient Water Splitting

Measurement evidence

Diffraction Structure

Creating Dual Active Sites in Conductive Metal-Organic Frameworks for Efficient Water Splitting · He Y., Yan F., Zhang X. et al. · Advanced Energy Materials · 2023 · 2204177

2 measurement groups · 8 results

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

XRD, SEM, HRTEM, elemental mapping, ICP, XPS

IrCo-CAT/CC nanorod arrays · Electrode

Characterisation of IrCo-CAT/CC and RhCo-CAT/CC analogues.

Geometry
nanorod arrays on carbon cloth
Context
target_samples
Measurement source
article p.5 · Results and Discussion · Figures S12-S17 referenced
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
IrCo-CAT and RhCo-CAT nanorod diameterabout 80.0 nmText
Approximate
article p.5 · Results and Discussion · Figure S13 referenced
IrCo-CAT and RhCo-CAT nanorod lengthabout 1.2 micrometreText
Approximate
article p.5 · Results and Discussion · Figure S13 referenced
Co content in IrCo-CAT19.8 wt%SI Table
Exact Reported
S28-S29 · Table S3 · Table S3
Ir content in IrCo-CAT0.5 wt%SI Table
Exact Reported
S28-S29 · Table S3 · Table S3
Co content in RhCo-CAT19.4 wt%SI Table
Exact Reported
S28-S29 · Table S3 · Table S3
Rh content in RhCo-CAT0.8 wt%SI Table
Exact Reported
S28-S29 · Table S3 · Table S3

X-ray diffraction (XRD)

RuCo-CAT/CC nanorod arrays · Electrode

XRD comparison of Co-CAT/CC and RuCo-CAT/CC with simulated Co-CAT pattern.

Geometry
nanorod arrays on carbon cloth
Context
target_sample_vs_pristine_control
Measurement source
article p.2 · Results and Discussion · Figure 1b
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
M-CAT c-direction XRD reflection27.7 degrees 2thetaText
Rounded Reported
article p.2 · Results and Discussion · Figure 1b
M-CAT (100) XRD peak4.6 degrees 2thetaText
Rounded Reported
article p.2 · Results and Discussion · Figure 1b