Inquiry
Form loading...

China Suppliers Factory - MIL-88A(Fe) Powder Metal Organic Frameworks for Environmental Remediation and Catalysis

acvbn

MIL-88A(Fe), composed of FeCl3·6H2O and sodium fumarate, is a cutting-edge material that has gained recognition for its remarkable applications in environmental remediation and catalysis. As a leading product from trusted suppliers in China, our MIL-88A(Fe) is manufactured in a state-of-the-art factory, ensuring high quality and performance. This innovative compound offers significant potential for various industrial processes, making it an ideal choice for companies seeking effective solutions in sustainability and catalysis

    Product Name MIL-88A(Fe)
    Particle size 0.1~0.2 μm
    Specific surface area ≥28 ㎡/g
    Pore size 0.4~2.0 nm

    MIL-88A(Fe), a brown powder form of Metal Organic Frameworks (MOFs), is synthesized using FeCl3·6H2O and sodium fumarate. This MOF has emerged as a promising material for environmental remediation and catalysis, showcasing its ability to activate hydrogen peroxide (H2O2) in photo-self Fenton systems. This activation is instrumental in the degradation of pollutants such as tetracycline and 2,4-dichlorophenoxyacetic acid (2,4-D) under visible light, achieving remarkable removal efficiencies and bacterial inactivation rates.

    The integration of MIL-88A(Fe) with other materials, like V2CTx MXene, has been demonstrated to enhance its electrocatalytic properties, particularly for nitrogen reduction. This has led to improved yields and selectivity of ammonia, a critical component in various industrial processes and a key nutrient in agricultural fertilizers.

    KAR-F47 MIL-88A(Fe)

    Optimization of MIL-88A(Fe) synthesis through ultrasonic methods has been shown to expedite the synthesis process while maintaining high yields. This method is particularly beneficial in the production of biologically active compounds, such as benzoxazoles, which have potential applications in pharmaceuticals and agrochemicals.

    Physically, MIL-88A(Fe) is characterized by its particle size, with a width of 50 nm and a length ranging from 500 to 2000 nm. Despite its specific surface area being less than 100 ㎡/g, the MOF offers a versatile pore size range from 0.4 to 2.0 nm, accommodating a variety of applications that require different degrees of molecular sieving.

    MIL-88A(Fe) stands out as a sustainable and efficient catalyst with a broad spectrum of applicability in environmental and synthetic chemistry. Its multifunctional nature and the ongoing research into its properties and applications ensure that MIL-88A(Fe) will continue to be a significant player in the development of eco-friendly and high-performance materials for a wide range of industries.

    Frequently Asked Questions (FAQ)

    What is MIL-88A(Fe) and how is it synthesized?

    MIL-88A(Fe) is a brown powder form of Metal Organic Frameworks (MOFs). It is synthesized using FeCl3·6H2O and sodium fumarate, and its synthesis process can be optimized through ultrasonic methods to expedite production while maintaining high yields.

    What are the primary environmental applications of MIL-88A(Fe)?

    It is highly effective for environmental remediation, particularly in photo-self Fenton systems. It activates hydrogen peroxide (H2O2) under visible light to degrade pollutants like tetracycline and 2,4-dichlorophenoxyacetic acid (2,4-D), achieving high removal efficiencies and bacterial inactivation.

    How does MIL-88A(Fe) benefit electrocatalysis?

    When integrated with materials like V2CTx MXene, MIL-88A(Fe) exhibits enhanced electrocatalytic properties, specifically for nitrogen reduction. This improvement increases the yield and selectivity of ammonia production.

    What are the physical specifications of MIL-88A(Fe)?

    MIL-88A(Fe) typically features a particle size of 0.1~0.2 μm (with a width of 50 nm and length of 500–2000 nm), a specific surface area of ≥28 ㎡/g (generally under 100 ㎡/g), and a pore size distribution of 0.4~2.0 nm.

    Can MIL-88A(Fe) be used in pharmaceutical synthesis?

    Yes, the optimized synthesis of MIL-88A(Fe) is highly beneficial in producing biologically active compounds such as benzoxazoles, which have vital applications in both pharmaceuticals and agrochemicals.