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High-Quality MIL-100(Fe) Powder Metal Organic Frameworks (MOFs) from China Suppliers and Factory

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MIL-100(Fe) is a cutting-edge material manufactured by leading suppliers in China. This unique compound consists of [Fe3O(X) (H2O)2]6+ clusters, where X can be either OH- or F-, combined with 1, 3, 5-benzenetricarboxylic acid (H3BTC) anions. The resulting zeotype structure features two types of cavities measuring 25 and 29 Å, which are accessible through distinct windows of 5.5 and 8.6 Å. MIL-100(Fe) demonstrates exceptional stability across a wide range of water vapor pressures and can withstand treatment with boiling water. This remarkable stability contributes to its outstanding performance in gas adsorption and separation applications, making it a top choice for industries sourced from reputable factories in China

    Product Parameter Specification
    Product Name MIL-100(Fe)
    Particle size 200~500 nm
    Specific surface area ≥1300 ㎡/g
    Pore size 0.3~1 nm
    Excellent Stability

    Remarkably stable under a wide range of water vapor pressures or treatment with boiling water.

    Eco-Friendly & Safe

    Utilizes iron as the metal center, making it cheap, nontoxic, and environmentally friendly compared to Co or Cr.

    High Thermal Limits

    Maintains stability up to 280 °C in air and up to 340 °C in a nitrogen (N₂) atmosphere.

    MIL-100(Fe) can maintain to be remarkably stable under a large scope of water vapor pressures or treatment with boiling water. On the one hand, iron, the metal center of MIL-100(Fe), is cheap, nontoxic, and environmentally friendly compared with other metals (i.e., Co, Cr, etc), which also makes MIL-100(Fe) welcome. On the other hand, MIL-100(Fe) as a supporting matrix possesses distinctive characteristics including high thermal stability (up to 280 °C in air and 340 °C in N2) and mesoporous structure enabling easy and rapid diffusion of reactant molecules.
    KAR-F34 MIL-100(Fe)
    MIL-100(Fe) was found to show a good performance in gas adsorption and separation. First, MIL-100(Fe) with mesoporous cages could be a potential water vapor adsorbent. According to its water sorption isotherm at 30 °C, MIL-100(Fe) showed outstanding water sorption uptakes up to 0.873 g H2O per g dry absorbent at partial pressures of over 0.5. This value for MIL-100(Fe) absorbent was much higher than those of commercial adsorbents including NaX (0.336 g/g), SAPO-34 (0.330 g/g), and silica gel (0.327 g/g). In contrast to the conventional porous materials which needed to be dehydrated at high temperature before use, the MIL-100(Fe) adsorbent required a dehydration temperature of 70 °C. The excellent performance in water vapor adsorption exhibited by MIL-100(Fe) suggested commercially viable application of energy-efficient desiccant dehumidification.
    Frequently Asked Questions
    Q: What are the key physical properties of MIL-100(Fe)?

    MIL-100(Fe) features a particle size of 200~500 nm, a specific surface area of ≥1300 ㎡/g, and a pore size ranging from 0.3 to 1 nm.

    Q: Why is MIL-100(Fe) considered environmentally friendly?

    Unlike other metal-organic frameworks that use metals like Cobalt (Co) or Chromium (Cr), MIL-100(Fe) uses Iron (Fe) as its metal center, which is cheap, nontoxic, and environmentally friendly.

    Q: What is the thermal stability limit of MIL-100(Fe)?

    MIL-100(Fe) exhibits high thermal stability, resisting temperatures up to 280 °C in air and up to 340 °C in a Nitrogen (N₂) environment.

    Q: How does its water adsorption capacity compare to commercial adsorbents?

    MIL-100(Fe) achieves a water sorption uptake of up to 0.873 g H₂O per g dry adsorbent. This is significantly higher than common alternatives such as NaX (0.336 g/g), SAPO-34 (0.330 g/g), and silica gel (0.327 g/g).

    Q: What dehydration temperature does MIL-100(Fe) require before use?

    While conventional porous materials require high-temperature dehydration, the MIL-100(Fe) adsorbent only requires a low dehydration temperature of 70 °C, making it highly energy-efficient.