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Fe-MIL-68

Fe-MIL-68

CAS NO.:1251849-13-4Formula:C8H5FeO5.C3H7NOWeight: 310.06

Product: MIL-68(Fe)
Synonyms: Fe(OH)(BDC)·(dmf)x
CAS:1251849-13-4

Basic Information
Unit MF. C8H5FeO5.C3H7NO Unit MW. 310.06
Coordination Metal Fe Linkers

1,4-benzenedicarboxylic acid (H2BDC)

Pore Size   Pore Volume  
Surface Area 665(10) m²/g (obtained after activation at 300°C for one day)
Analog Structure /
Product Property
Appearance Yellow-brown crystalline needles  
Particle Size  
Stability
1) Thermal stability: Stable up to 300°C in aerobic conditions
2) Thermal decomposition temperature: Above 320°C, the structure collapses to form Fe2O3
Preservation
1) Keep in dry and cool conditions
2) Activation is recommended before use by heating at 300°C under vacuum for one day
Other Features
Redox activity: Suitable as a positive electrode material for lithium-ion batteries, but with relatively low capacity (about 30 mAh/g)
Applications
1) Gas adsorption and separation: Capable of gas adsorption.
2) Energy storage: Can be used as a positive electrode material for lithium-ion batteries
Characterizations
XRD
NA
SEM
NA
BET
NA
FTIR
NA
References
1) Alexandra Fateeva, Patricia Horcajada, Thomas Devic, Christian Serre, Jérôme Marrot, Jean-Marc Grenèche, Mathieu Morcrette, Jean-Marie Tarascon, Guillaume Maurin, Gérard Férey; Eur. J. Inorg. Chem. 2010, 3789–3794; DOI: 10.1002/ejic.201000486; Synthesis, Structure, Characterization, and Redox Properties of the Porous MIL-68(Fe) Solid;
2) Dengke Wang, Josep Albero, Hermenegildo García, Zhaohui Li. Journal of Catalysis, 2017, 349. DOI: 10.1016/j.jcat.2017.01.014, Visible-light-induced tandem reaction of o-aminothiophenols and alcohols to benzothiazoles over Fe-based MOFs: Influence of the structure elucidated by transient absorption spectroscopy.;
3) 3) Ruowen Liang, Zhoujun He, Yi Lu, Guiyang Yan, Ling Wu. Separation and Purification Technology, 2021, 277. DOI: 10.1016/j.seppur.2021.119442, High-Efficiency Sandwich-Like Hierarchical AgBr-Ag@MIL-68(Fe) Photocatalysts: Step-Scheme Photocatalytic Mechanism for Enhanced Photoactivity.