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China MOF-808 Powder Suppliers | High Stability Zr-MOF Factory with Large Cavities and High BET Surface Area

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MOF-808, a leading Zr-MOF first introduced by Furukawa et al., is known for its impressive large cavities measuring 18.4 Å and exceptional BET surface areas surpassing 2000 m²/g. The unique high oxidation state of zirconium in its inorganic secondary building unit (SBU) contributes to a high charge density and bond polarization, resulting in robust coordination bonds between Zr and O atoms. This intrinsic property ensures that MOF-808 maintains remarkable stability in both hydrothermal and acidic conditions. As a reliable product from top suppliers in China, our factory is dedicated to providing high-quality materials like MOF-808 that meet industrial demands

    Product Name MOF-808
    Particle size ≈1 μm
    Specific surface area ≥1600 ㎡/g
    Pore size 0.3~0.7, 1.1~1.6 nm

    The inorganic SBU in MOF-808 comprises Zr63-O)4-(μ3-OH)4(CO2)12 clusters (referred to as Zr6-clusters), wherein terminal formate anions can be further replaced by other functionalized ligands during MOF synthesis or by PSM, allowing for facile incorporation of targeted functional groups. The presence of large cavities with stable, open coordination sites amenable to PSM has made MOF-808 an attractive candidate for use in industrial processes.

    Key Applications of MOF-808:
    • Methane oxidation to methanol
    • Heavy metal ion capture
    • Superacid catalysis
    • Water capture
    • Shape-selective catalysis
    KAR-F31 MOF-808
    Frequently Asked Questions
    What is the specific surface area and particle size of MOF-808?
    MOF-808 features a specific surface area of ≥1600 ㎡/g and has an approximate particle size of 1 μm.
    What is the pore size range of MOF-808?
    The pore size distribution of MOF-808 ranges between 0.3~0.7 nm and 1.1~1.6 nm.
    What clusters make up the inorganic SBU in MOF-808?
    The inorganic SBU (Secondary Building Unit) in MOF-808 comprises Zr63-O)4-(μ3-OH)4(CO2)12 clusters, commonly referred to as Zr6-clusters.
    How does MOF-808 facilitate Post-Synthetic Modification (PSM)?
    The terminal formate anions in the Zr6-clusters of MOF-808 can be replaced by other functionalized ligands during synthesis or via Post-Synthetic Modification (PSM), allowing for the easy incorporation of targeted functional groups.
    What are the primary industrial applications of MOF-808?
    MOF-808 is widely applied in industrial processes including methane oxidation to methanol, heavy metal ion capture, superacid catalysis, water capture, and shape-selective catalysis.