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

Measurement evidence

Diffraction Structure

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

2 measurement groups · 2 results

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

PXRD

Co3O4@CuCAT optimal core-shell electrode · Electrode

Powder XRD comparison of Co3O4, CuCAT and Co3O4@CuCAT.

Atmosphere
ambient
Geometry
powder diffraction
Context
composite target versus pristine controls
Measurement source
p002 / journal p.6576 · Results · Figure 1a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Composite phase assignmentcombination of CuCAT and Co3O4 with BCC substrate peaks; no other peaksText
Qualitative
p002 / journal p.6576 · Results · Figure 1a

PXRD

CuCAT powder · Powder

CuCAT before and after immersion in 1 M KOH for 3 days; comparison with Figure S2c.

Atmosphere
ambient
Geometry
powder diffraction
Context
pristine CuCAT stability control
Measurement source
p002 / journal p.6576 · Results · Figure 1a; Figure S2c
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CuCAT phase retained after KOH exposureall phases retained after 3 days in 1 M KOHText
Qualitative
p002 / journal p.6576 · Results · Figure S2c