Diffraction Structure — Enhanced bioelectrochemical performance caused by porous metal-organic framework MIL-53(Fe) as the catalyst in microbial fuel cells

Measurement evidence

Diffraction Structure

Enhanced bioelectrochemical performance caused by porous metal-organic framework MIL-53(Fe) as the catalyst in microbial fuel cells · Wang H., Jiang L., Chen J. et al. · Process Biochemistry · 2020 · 147-153

1 measurement group · 4 results

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

X-ray diffraction (XRD, PANalytical)

MIL-53(Fe) yellow powder · Powder

Powder XRD used to assign MIL-53(Fe) crystal planes.

Geometry
powder diffraction
Context
pristine MIL-53(Fe)
Measurement source
2,4 · 2.2; 3.1 · Fig. 2a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
MIL-53(Fe) XRD (001) peak2theta = 9.0 deg, assigned to (001)Text
Rounded Reported
4 · 3.1 · Fig. 2a
MIL-53(Fe) XRD (010) peak2theta = 25.2 deg, assigned to (010)Text
Rounded Reported
4 · 3.1 · Fig. 2a
MIL-53(Fe) XRD (100) peak2theta = 12.3 deg, assigned to (100)Text
Rounded Reported
4 · 3.1 · Fig. 2a
XRD phase assignment/purityThe result was perfectly consistent with simulation results, indicating very high purity of prepared MIL-53(Fe).Qualitative
Qualitative
4 · 3.1 · Fig. 2a