Diffraction Structure — Rational Design of Conductive MOF-Based Diatomic Electrocatalysts for Selective Ammonia Synthesis

Measurement evidence

Diffraction Structure

Rational Design of Conductive MOF-Based Diatomic Electrocatalysts for Selective Ammonia Synthesis · Li Q., Jia C., Wang Q. et al. · Journal of the American Chemical Society · 2025 · 39430-39439

2 measurement groups · 1 results

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

Powder X-ray diffraction; Rietveld refinement for Cu-DBCO; XRD comparisons for Cu/Ni and Cu95M5 series

Cu99Ni1-DBCO · Powder

SmartLab diffractometer with Cu Kalpha radiation, lambda=0.154178 nm.

Context
pristine MOF powders
Measurement source
3 · Characterization · Figures S2, S3, S7, S16
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource

PXRD after immersion in ultrapure water

Cu99Ni1-DBCO · Powder

Cu99Ni1-DBCO immersed in aqueous solution/ultrapure water pH 6.8 for 3 months.

Atmosphere
aqueous
Context
pristine MOF powder
Measurement source
4 · Results and Discussion · Figure S16
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cu99Ni1-DBCO aqueous immersion stability durationafter 3 months of immersion in ultrapure water (pH 6.8)Text
Exact Reported
p004 · Results and Discussion