Modulating the redox states in a 3D conductive MOF for sweat ascorbic acid monitoring
Wang W.-Q., Xie H., Cheng F. et al. · Chemical Engineering Journal · 2025
Reported here: FeTHQ
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2 papers
Wang W.-Q., Xie H., Cheng F. et al. · Chemical Engineering Journal · 2025
Reported here: FeTHQ
Chen G., Gee L.B., Xu W. et al. · Journal of the American Chemical Society · 2020
Reported here: FeTHQ
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Raw names, formulas and structural assignments remain separate; no consensus value is inferred.
| Paper and reported name | Formula and components | Structure context | Source |
|---|---|---|---|
| FeTHQ2025 · Modulating the redox states in a 3D conductive MOF for sweat ascorbic acid monitoring | Not specifiedFe · tetrahydroxy-1,4-quinone hydrate / tetrahydroxy-1,4-benzoquinone hydrate (THQ) | 3D · Pristine3D conductive MOF; PXRD peaks assigned to (100), (200), and (300) facets. | 2 · Results and discussion |
| FeTHQ2020 · Valence-Dependent Electrical Conductivity in a 3D Tetrahydroxyquinone-Based Metal-Organic Framework | Framework: Fe8(C6O6)6; SI assumed solvated formula: Fe8(C6O6)6(H2O)10(DMF)1.6Fe octamer / octahedral FeO6 coordination with Fe-O-Fe apex-sharing geometry · Tetrahydroxy-1,4-quinone (THQ), represented as deprotonated C6O6 in the framework | 3D · PristineCubic 3D conductive MOF; Rietveld-refined Pm-3 structure with a = 10.5457(2) A. | 21243 · abstract and main text · Figure 1 |