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China MOF-801 Powder Suppliers | High-Quality Metal Organic Frameworks from Factory for Water Harvesting Applications

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MOF-801 is a remarkable metal-organic framework crafted from Zr6O4(OH)4 metal clusters and fumarate ligands. With a topology similar to UiO-66, it was first introduced in 2012 through a solvothermal reaction involving ZrCl4 and fumaric acid, with formic acid serving as a modulator. This innovative framework is gaining attention for its exceptional applications in water harvesting, efficiently utilizing ambient humidity to generate fresh water. Additionally, MOF-801 acts as an effective adsorbent in cooling systems, making it a versatile solution for various industries. For high-quality MOF-801, consider partnering with trusted suppliers and manufacturers in China

    Product Name MOF-801
    Particle size ≈600 nm
    Specific surface area ≥900 ㎡/g
    Pore size ≈0.4 nm

    Since then, the research interest in MOF-801 has significantly increased. This is particularly driven by its promising application as a water harvester which utilises the surrounding humidity to produce fresh water and as an adsorbent for cooling system. Besides, Many potential applications of MOF-801 were reported in hydrogen and water storage, photocatalytic degradation, adsorbent for pollutants removal, the removal of fluoride and poisonous metals, nanoscale drug delivery, and separation of propylene/propane mixture.

    Water Harvesting & Cooling Adsorbent
    Hydrogen & Water Storage Capacity
    Pollutant & Heavy Metal Removal
    Nanoscale Drug Delivery & Gas Separation
    KAR-F37 MOF-801 Structure

    The SBU of MOF-801 is a zirconium oxide [Zr63–O)43–OH)4] octahedral cluster in which six Zr cations reside at the six polyhedron vertices of the octahedron are held together by eight μ3‑oxygen atoms. The eight equivalent equilateral faces are alternately capped by four μ3-OH and four μ3-O groups. The SBUs are connected to each other by ligands forming a net topology of ‘fcu’ type where each SBU is connected to twelve carboxylate groups from twelve ligands. It is a highly hydrostable MOF due to the strong bonding of zirconium with the oxygen atom of the carboxylate, acting as hard acid and base, respectively.

    Frequently Asked Questions
    What are the primary specifications of MOF-801?
    MOF-801 has a particle size of approximately 600 nm, a specific surface area of ≥900 ㎡/g, and a pore size of about 0.4 nm.
    What are the main applications of MOF-801?
    MOF-801 is highly utilized as a water harvester to produce fresh water from atmospheric humidity and as an adsorbent in cooling systems. It is also applied in hydrogen and water storage, photocatalytic degradation, pollutant removal (such as fluoride and toxic metals), nanoscale drug delivery, and propylene/propane mixture separation.
    Why does MOF-801 exhibit high hydrostability?
    The outstanding hydrostability of MOF-801 is due to the strong chemical bonding between the zirconium (acting as a hard acid) and the oxygen atom of the carboxylate ligand (acting as a hard base).
    What is the SBU chemical structure of MOF-801?
    The Secondary Building Unit (SBU) of MOF-801 is a zirconium oxide [Zr63–O)43–OH)4] octahedral cluster. Within this structure, six Zr cations reside at the six polyhedron vertices of the octahedron, held together by eight μ3-oxygen atoms.
    What is the network topology of MOF-801?
    MOF-801 features a net topology of the 'fcu' type, where each SBU is interconnected to twelve carboxylate groups originating from twelve distinct ligands.