Diffraction Structure — Efficient hydrogen production from MIL-53(Fe) catalyst-modified Mo: BiVO4 photoelectrodes

Measurement evidence

Diffraction Structure

Efficient hydrogen production from MIL-53(Fe) catalyst-modified Mo: BiVO4 photoelectrodes · Zhang B., Dong G., Wang L. et al. · Catalysis Science and Technology · 2017 · 4971-4976

2 measurement groups · 4 results

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

XRD and XPS

FMBV-2 / 2% Mo:BiVO4-MIL-53(Fe) · Electrode

FMBV-2 and pure 2% Mo:BiVO4 compared; XPS elemental spectra for FMBV.

Geometry
FTO-supported photoanode film
Context
target composite and doped semiconductor control
Measurement source
4 · Results and discussion · Fig. 3A; Fig. S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
FMBV XPS elemental compositionFe, C, O, Mo, Bi and V presentText
Qualitative
4 · Results and discussion · Fig. S4
FMBV XRD phase assignmentcharacteristic peaks indexed to monoclinic BiVO4; no additional MIL-53(Fe) peaks observedText
Qualitative
4 · Results and discussion · Fig. 3A; Fig. S3

Powder XRD

as-prepared MIL-53(Fe) powder · Powder

Cu Kalpha radiation, 40 kV and 40 mA.

Geometry
powder
Context
pristine MIL-53(Fe) component
Measurement source
2-3 · Materials and instruments; Results and discussion · Fig. 1C-D
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
MIL-53(Fe) framework and pore dimensionalitythree-dimensional framework with a one-dimensional pore channel systemText
Qualitative
3 · Results and discussion · Fig. 1D
MIL-53(Fe) phase assignmentmonoclinic symmetry, matching crystalline MIL-53(Fe) frameworkText
Qualitative
3 · Results and discussion · Fig. 1C