Inquiry
Form loading...

MIL-100(Cr) Powder Metal Organic Frameworks - Top China Suppliers and Factory for Gas Separation and Catalysis

acvbn

MIL-100(Cr), with the chemical formula C18H10Cr3FO15, is a highly sought-after material in the realm of gas separation and catalysis. Known for its unique structural properties, it has become a essential product for various industrial applications. As a leading manufacturer based in China, we take pride in being one of the top suppliers of MIL-100(Cr). Our factory employs advanced production techniques to ensure the highest quality standards, making our product a reliable choice for businesses seeking innovative solutions in the field of chemistry.

    Product Name MIL-100(Cr)
    Particle size 0.05~0.1 μm
    Specific surface area ≥1200 ㎡/g
    Pore size 0.8~2.7 nm
    Key Performance Indicator: Modified MIL-100(Cr) membranes achieve an impressive 4638 GPU in CO₂ permeance and a selectivity ratio of 35 in CO₂/N₂ separation.

    MIL-100(Cr), a green powder form of Metal Organic Frameworks (MOFs) with the chemical formula C18H10Cr3FO15, is celebrated for its distinctive structural attributes and a wide array of applications, notably in the realms of gas separation and catalysis. This MOF is distinguished by its exceptional mechanical robustness, which surpasses that of its counterparts like MIL-101(Cr). The enhanced linker connectivity in MIL-100(Cr) augments the interplay between metal nodes, thereby postponing structural degradation under stress.

    This mechanical stability is a pivotal attribute for applications such as CO2 separation, where modified MIL-100(Cr) membranes have displayed remarkable CO2 permeance and selectivity. These membranes have achieved impressive figures of 4638 GPU in CO2 permeance and a ratio of 35 in CO2/N2 separation, marking a significant advancement in the field of gas capture and purification.

    Beyond gas separation, MIL-100(Cr) has also garnered interest in catalysis. It has been particularly examined in the selective hydrogenation of nitrobenzene, where it acts as a support for bimetallic catalysts. The synergistic effects between the catalysts and the MOF's structure amplify the catalytic activity, offering a promising avenue for catalytic processes.

    The exploration of MIL-100(Cr) in these capacities underscores its versatility and underscores its potential in both environmental conservation and industrial processes. However, to fully harness its capabilities, ongoing research is essential to refine its performance across diverse applications.

    MIL-100(Cr) is characterized by a particle size of 50-100 nm, which, in conjunction with a specific surface area exceeding 1200 ㎡/g, provides a substantial surface for chemical interactions. The pore size ranging from 0.8 to 2.7 nm is another key feature that facilitates its utility in gas storage and separation processes.

    MIL-100(Cr) is a MOF of notable promise, with a robust structure and a broad spectrum of applications. Its ongoing development and optimization are set to cement its role as a key material in addressing contemporary environmental and industrial challenges.

    Frequently Asked Questions
    What is the chemical formula and appearance of MIL-100(Cr)?
    MIL-100(Cr) is a Metal Organic Framework (MOF) that appears as a green powder. Its chemical formula is C₁₈H₁₀Cr₃FO₁₅.
    What are the key physical properties of MIL-100(Cr)?
    MIL-100(Cr) features a particle size of 0.05~0.1 μm (50-100 nm), a specific surface area of ≥1200 ㎡/g, and a pore size ranging from 0.8 to 2.7 nm.
    How does the mechanical stability of MIL-100(Cr) compare to other MOFs?
    MIL-100(Cr) exhibits exceptional mechanical robustness, surpassing counterparts like MIL-101(Cr). This is due to enhanced linker connectivity that strengthens the interplay between metal nodes and delays structural degradation under stress.
    What performance does MIL-100(Cr) show in gas separation applications?
    In CO₂ separation applications, modified MIL-100(Cr) membranes deliver outstanding performance, achieving 4638 GPU in CO₂ permeance and a selectivity ratio of 35 in CO₂/N₂ separation.
    How is MIL-100(Cr) utilized in catalysis?
    MIL-100(Cr) serves as an effective support for bimetallic catalysts, particularly in the selective hydrogenation of nitrobenzene. The synergistic effects between the catalysts and the MOF structure significantly amplify catalytic activity.