Primary study2022
Fe–O–Zr in MOF for effective photo-Fenton Bisphenol A degradation: Boosting mechanism of electronic transmission
Guan Z., Zhu S., Ding S. et al. · Chemosphere · 2022
Reported here: FeUiO-X
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1 papers
Guan Z., Zhu S., Ding S. et al. · Chemosphere · 2022
Reported here: FeUiO-X
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| Paper and reported name | Formula and components | Structure context | Source |
|---|---|---|---|
| FeUiO-X2022 · Fe–O–Zr in MOF for effective photo-Fenton Bisphenol A degradation: Boosting mechanism of electronic transmission | Fe-doped UiO-66 containing Fe-O-Zr bonds; X = 0.05, 0.1, 0.5, 1 or 2 based on FeSO4 mass usedZr-oxo clusters with introduced Fe species and Fe-O-Zr bonding · Terephthalic acid / BDC inherited from UiO-66 | 3D · PristineUiO-66-like crystalline framework retained after Fe introduction; FeUiO-1 shows no Fe oxidation peak and XPS/FTIR evidence for Fe-O-Zr. | 3 · 3.1 Morphologies and structures of UiO-66 and FeUiO-X · Fig. 1; Fig. 2 |