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China Suppliers and Factory for UIO-66 Powder Metal Organic Frameworks (MOFs) - Versatile Applications in Catalysis and More

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UiO-66 is a versatile metal-organic framework (MOF) featuring zirconium oxide nodes interconnected by terephthalic acid ligands. First synthesized at the University of Oslo over a decade ago, it is named UiO-66 in honor of this prestigious institution. This innovative material is highly sought after for its applications in diverse fields including catalysis, photocatalysis, adsorption separation, sensors, and biomedicine. As a leading manufacturer and supplier in China, our factory is committed to providing high-quality UiO-66 that meets the demands of various industries. Discover the potential of UiO-66 and partner with us for reliable supply and exceptional performance

    Product Name UiO-66
    Particle size 100~200 nm
    Specific surface area ≥1000 ㎡/g
    Pore size 0.35~1.5 nm

    This crystal is a face-centered-cubic structure containing an fm-3m symmetry with a lattice parameter of 20.7 Å. It contains two separate cages, a tetrahedron cage of 7.5 Å, another an octahedron cage of 12 Å, and a pore aperture of 6 Å. The theoretical pore volume of UiO-66 is 0.77 cm3/g, and the surface area is 1160 m2/g. UiO-66 is of the fcu topology. The use of this system for MOFs includes defining the inorganic node as a secondary building unit (SBU) and classifying the zirconium oxide node in UiO-66 as cuboctaherdral, allowing up to 12 points of extension for BDC struts to coordinate.

    Key Structural Insights

    Half of the eight oxygen atoms in the hydroxylated version of this SBU are bound to three zirconium atoms as individual atoms, and the remaining oxygen atoms are bound to three zirconium atoms in hydroxide form. UiO-66 is known for its high stability and coordination.

    The highly tunable nature of this exceedingly stable MOF allows strategies such as doping and postsynthetic modifications to add functionalities for their specific applications. It is anticipated that this research will continue to advance into many different fields as there have been many exciting prospects for the application of UiO-66 in areas such as catalysis, photocatalysis, adsorption separation, sensors, and even in biomedicine.

    Frequently Asked Questions (FAQ)
    What is the particle size and surface area of UiO-66?
    UiO-66 typically features a particle size of 100~200 nm, with a specific surface area of ≥1000 ㎡/g (and a theoretical surface area of 1160 m2/g).
    What is the crystal structure and topology of UiO-66?
    UiO-66 has a face-centered-cubic structure with fm-3m symmetry, a lattice parameter of 20.7 Å, and belongs to the fcu topology. It contains a 7.5 Å tetrahedron cage and a 12 Å octahedron cage.
    What are the pore characteristics of UiO-66?
    It features a pore size ranging from 0.35 to 1.5 nm, a pore aperture of 6 Å, and a theoretical pore volume of approximately 0.77 cm3/g.
    Can UiO-66 be modified for custom applications?
    Yes, UiO-66 is highly stable and tunable, allowing strategies such as doping and postsynthetic modifications to add specific functionalities tailored to different target applications.
    What are the primary applications of UiO-66?
    UiO-66 shows exciting application prospects across multiple fields, including catalysis, photocatalysis, adsorption separation, chemical sensors, and biomedicine.