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China MIL-101(Fe) Powder Metal Organic Frameworks (MOFs) - Top Suppliers & Factory Available

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MIL-101(Fe) is a highly acclaimed metal-organic framework (MOF) with the molecular formula Fe3O(H2O)2OH(BTC)2). Known for its remarkable versatility, this innovative material finds extensive applications in various fields such as adsorption, catalysis, and drug delivery. As a leading supplier in China, our factory specializes in the production of high-quality MIL-101(Fe), ensuring exceptional performance and reliability for your industrial and research needs. Choose our trusted China suppliers for your MOF requirements and experience the benefits of this cutting-edge technology

    Product Name MIL-101(Fe)
    Particle size 1-3 μm
    Specific surface area ≥1000㎡/g
    Pore size 0.3~2.0 nm
    MIL-101(Fe) is a metal-organic framework (MOF) primarily composed of iron (Fe) ions coordinated with organic ligands, specifically 1,4-benzenedicarboxylic acid (BDC). This structure provides high porosity and surface area, making it suitable for various applications, including pollutant remediation and energy storage.
    Key Structural Composition

    The framework is based on iron ions (Fe3+) which are pivotal for its structural integrity and functionality (Chen et al., 2024). The BDC ligands form a robust coordination network with the iron ions, contributing to the stability and porosity of the MOF (Liu et al., 2024).

    MIL-101(Fe) has been effectively utilized for the simultaneous removal of heavy metals like Pb²⁺, Cd²⁺, and Cu²⁺ from contaminated water and soil, achieving low residual concentrations (Wang et al., 2025). It also serves as a photocatalyst for degrading crude oil in wastewater, demonstrating a remarkable 94.73% removal efficiency under optimized conditions (Wang et al., 2024).

    The framework has been modified to create efficient electrocatalysts for rechargeable Zn-air batteries, showcasing high performance in oxygen evolution and reduction reactions (Hao et al., 2024). Additionally, MIL-101(Fe) composites with iron nanoparticles have been developed for supercapacitor applications, achieving a capacitance of 1305 F g⁻¹ (Mahajan et al., 2024).

    Current Challenges

    While MIL-101(Fe) shows promise in these applications, challenges such as scalability and long-term stability in practical environments remain areas for further research.

    KAR-F49 MIL-101(Fe)
    Frequently Asked Questions (FAQ)
    Q What is the composition and structure of MIL-101(Fe)?
    MIL-101(Fe) is a metal-organic framework (MOF) consisting of iron (Fe³⁺) ions coordinated with 1,4-benzenedicarboxylic acid (BDC) organic ligands. This coordination creates a highly porous structure with a large surface area.
    Q What are the key physical properties of MIL-101(Fe)?
    It features a particle size of 1-3 μm, a specific surface area of ≥1000㎡/g, and a pore size distribution ranging from 0.3 to 2.0 nm.
    Q How is MIL-101(Fe) used in environmental remediation?
    It is used to simultaneously remove heavy metals (such as Pb²⁺, Cd²⁺, and Cu²⁺) from contaminated water and soil. Additionally, it acts as a photocatalyst that can degrade crude oil in wastewater with a 94.73% efficiency rate.
    Q Can MIL-101(Fe) be applied to energy storage systems?
    Yes. Modified MIL-101(Fe) serves as an electrocatalyst for rechargeable Zn-air batteries to facilitate oxygen evolution and reduction. It is also used in iron nanoparticle composites for supercapacitors, achieving a capacitance of 1305 F g⁻¹.
    Q What limitations currently affect the practical use of MIL-101(Fe)?
    The primary challenges preventing widespread practical application are scalability in production and maintaining long-term stability in real-world environments.