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China MOF-5 Powder Metal Organic Frameworks Suppliers | High-Quality Factory Production for Gas Storage & Pollution Control

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MOF-5, crafted from Zn4O clusters and interconnected by benzene-1,4-dicarboxylate, showcases extensive potential for diverse applications including gas storage and pollutant removal. This innovative material is highly sought after by manufacturers and suppliers in China. Its distinctive structural characteristics and customizable functionalization options significantly improve its efficacy in these crucial areas, making it a preferred choice among industry professionals seeking quality products from reliable factories.

    Product Name MOF-5
    Particle size 1-3 um
    Specific surface area > 2000㎡/g
    Pore size 1.2nm

    MOF-5 is recognized for its high porosity, making it suitable for gas storage, especially hydrogen and carbon dioxide. The binding energy for hydrogen adsorption is approximately 26-27 meV, indicating effective physisorption(Gurung & Adhikari, 2023). A semi-empirical molecular dynamics study demonstrated that CO2 can form a liquid-like structure within MOF-5, showcasing its capacity for gas storage under varying conditions(Listyarini et al., 2023).

    Recent studies highlight the effectiveness of functionalized MOF-5 in removing phenolic pollutants, with fluorine-modified variants showing superior adsorption capabilities due to enhanced van der Waals and π–π interactions(Razavi et al., 2024).

    To address moisture susceptibility, a hydrophobic porous shell was developed around MOF-5, maintaining its structural integrity while enabling CO2/N2 separation under humid conditions(Li et al., 2023). While MOF-5 shows promise in various applications, its stability and performance can be influenced by environmental factors and structural modifications, necessitating further research to optimize its use in practical scenarios.

    Gas Storage Capacity
    High porosity optimized for hydrogen and carbon dioxide storage. Shows effective physisorption and liquid-like CO2 structuring.
    Pollutant Adsorption
    Fluorine-modified variants exhibit superior capabilities in removing phenolic pollutants via enhanced molecular interactions.
    Moisture Stability
    Hydrophobic porous shell integration safeguards structural integrity, allowing efficient gas separation in humid conditions.
    KAR-F41 MOF-5
    Frequently Asked Questions
    Q What are the key physical properties of MOF-5?
    MOF-5 features a particle size of 1-3 um, a high specific surface area exceeding 2000㎡/g, and a pore size of 1.2nm.
    Q Why is MOF-5 suitable for gas storage?
    Due to its high porosity, MOF-5 is highly effective for storing gases like hydrogen (with a binding energy of 26-27 meV) and carbon dioxide, which can form liquid-like structures inside the framework.
    Q How does MOF-5 contribute to environmental cleanup?
    Functionalized MOF-5, particularly fluorine-modified versions, is highly efficient at removing phenolic pollutants through enhanced van der Waals and π–π interactions.
    Q How is the moisture sensitivity of MOF-5 resolved?
    By developing a hydrophobic porous shell around the MOF-5 structure, its integrity is maintained, enabling successful CO2/N2 separation even under humid conditions.
    Q What factors limit the practical application of MOF-5?
    Its stability and performance are sensitive to environmental factors and structural variations, which requires targeted modifications (like hydrophobic shells) to optimize performance for practical applications.