Diffraction Structure — Structure–Property Engineering of Redox-Active Tetrathiafulvalene- and Bipyridine-Based Metal–Organic Frameworks for Battery Cathodes

Measurement evidence

Diffraction Structure

Structure–Property Engineering of Redox-Active Tetrathiafulvalene- and Bipyridine-Based Metal–Organic Frameworks for Battery Cathodes · Wakamatsu K., Oshima H., Kobayashi N. et al. · Chemistry - A European Journal · 2026

2 measurement groups · 4 results

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

PXRD

Cd2(TTFTB) MOF powder/crystals · Powder

MiniFlex 600, Cu Kalpha1, 2theta 2-30 deg, 20 deg min^-1, 40 kV, 15 mA, RT

Context
pristine MOF powder/electrode
Measurement source
10 · 4.2.1 · Figure S3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
molecular/formula weight932.53 g/molSI Table
Exact Reported
S38 · Table S1
PXRD phase assignmentobserved Cd2(TTFTB) MOF peaks match simulated CIF patterns, especially low-angle 5-12 degQualitative
Qualitative
S4 · Figure S3

PXRD

TTF-hybrid-MOF powder/crystals · Powder

MiniFlex 600, Cu Kalpha1, 2theta 2-30 deg, 20 deg min^-1, 40 kV, 15 mA, RT

Context
pristine MOF powder/electrode
Measurement source
S4 · 1.1 · Figure S3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
molecular/formula weight1032.37 g/molSI Table
Exact Reported
S38 · Table S1
PXRD phase assignmentobserved TTF-hybrid-MOF peaks match simulated CIF patternsQualitative
Qualitative
S4 · Figure S3