Microscopy Morphology — Co 3 O 4 @Cu-Based Conductive Metal–Organic Framework Core–Shell Nanowire Electrocatalysts Enable Efficient Low-Overall-Potential Water Splitting

Measurement evidence

Microscopy Morphology

Co 3 O 4 @Cu-Based Conductive Metal–Organic Framework Core–Shell Nanowire Electrocatalysts Enable Efficient Low-Overall-Potential Water Splitting · Hu L., Xiong T., Liu R. et al. · Chemistry - A European Journal · 2019 · 6575-6583

1 measurement group · 3 results

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

SEM/TEM/HRTEM/EDS

Co3O4@CuCAT optimal core-shell electrode · Electrode

SEM, TEM, HRTEM, and EDS mapping of core-shell Co3O4@CuCAT.

Atmosphere
ambient
Geometry
microscopy
Context
composite target
Measurement source
p003 / journal p.6577 · Results · Figure 1c-k
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Core-shell morphologywell-defined CuCAT shell layer coating Co3O4 nanowire arraysText
Qualitative
p003 / journal p.6577 · Results · Figure 1d,e
Composite element distributionCo, O, C, and Cu coexist; coated layer comprises carbon and copper from CuCATText
Qualitative
p003 / journal p.6577 · Results · Figure 1f-k
Co3O4 lattice spacing0.233 nm, assigned to Co3O4 (222) planeText
Exact Reported
p003 / journal p.6577 · Results · Figure S4b,c