Diffraction Structure — Operando Raman and ex situ characterization of an iron-based conductive MOF as a negative electrode in Li-ion batteries

Measurement evidence

Diffraction Structure

Operando Raman and ex situ characterization of an iron-based conductive MOF as a negative electrode in Li-ion batteries · Ciria-Ramos I., Neale A.R., Hardwick L.J. et al. · Dalton Transactions · 2025 · 9714-9725

2 measurement groups · 3 results

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

Powder X-ray diffraction (PXRD), Cu Kalpha radiation

synthesised Fe-HHTP powder · Powder

D-Max Rigaku Ru300 rotating anode; 3-50 degrees 2theta; 0.03 degree step; 1 s per step.

Geometry
powder
Context
pristine Fe-HHTP powder
Measurement source
10 · 4.2 Powder and electrodes ex situ characterization techniques · Figure 1a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
PXRD crystallinityWeak PXRD pattern; low-crystalline materialText
Qualitative
2 · 2.1 MOF powder characterization · Figure 1a
PXRD weak reflection positionsapproximately 9.3, 15.1, 16.5, 21.3, 25.7, 27.1 and 27.5 degrees 2thetaText
Approximate
2 · 2.1 MOF powder characterization · Figure 1a

PXRD of fresh Fe-HHTP electrode

Fresh and cycled Fe-HHTP composite electrodes stopped at 0.1 V or 3 V · Electrode

5-35 degrees 2theta; 0.03 degree step; 2 s per step for the fresh electrode.

Geometry
composite electrode
Context
fresh composite electrode before cycling
Measurement source
10 · 4.2 Powder and electrodes ex situ characterization techniques · Figure S8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Fresh electrode XRD structural informationno discernible peaks in fresh electrode XRD; structural changes with cycles cannot be obtained by XRDText
Qualitative
9 · Figure S8 · Figure S8