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MIL-100(Al) Powder - Premium Metal Organic Frameworks from Leading China Suppliers and Factory

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MIL-100(Al) is a remarkable compound with the formula Al3O(OH)(H2O)2(BTC)2·nH2O, characterized by its unique trinuclear Al(u-O)(CO) cluster that forms a distinctive supertetrahedron. This material is specifically synthesized within a controlled pH range of 0.5 to 0.7 over a period of 3 to 4 hours, making it a sought-after choice among China Suppliers for innovative applications. The framework's node sites incorporate various hydroxyl and formate groups that enhance its reactivity and flexibility, positioning MIL-100(Al) as a valuable asset in catalytic applications. Our Factory is dedicated to producing high-quality MIL-100(Al) to meet the growing demands of various industries

    Product Name MIL-100 (Al)
    Particle size 0.4~0.6 μm
    Specific surface area ≥800 ㎡/g
    Pore size 0.4~1.0 mm

    Introduction to MIL-100(Al)

    MIL-100(Al), with a chemical composition of Al3O(OH)(H2O)2(BTC)2·nH2O (where BTC stands for 1,3,5-benzenetricarboxylate), is a metal-organic framework (MOF) that has garnered significant attention for its remarkable structural flexibility and catalytic prowess. It is particularly effective in key chemical reactions such as methanol dehydration. The catalytic activity of MIL-100(Al) is underscored by a high turnover frequency (TOF) per node, which rivals that of MIL-96 and surpasses MIL-110, making it a formidable catalyst in the realm of MOFs.

    💡 Key Highlight: The high turnover frequency (TOF) per node makes MIL-100(Al) one of the most efficient catalysts among standard aluminum-based MOFs.

    The reactivity of MIL-100(Al) is primarily attributed to its node sites, which are enriched with hydroxyl and formate groups. These functional groups not only enhance the MOF's catalytic potential but also imbue it with a degree of flexibility that is highly desirable for various chemical transformations. Furthermore, the exploration of MIL-100(Al) in bimetallic systems, such as when combined with chromium, has unveiled intriguing magnetic properties. These unique properties, along with the synergistic interactions between different metal ions, could significantly augment the MOF's performance across a spectrum of advanced applications.

    KAR-F44 MIL-100(Al)

    Applications & Physical Characteristics

    While MIL-100(Al) has already demonstrated its immense potential, there is a clear avenue for further research and development. Optimization of its synthesis and modification could tailor its properties to better suit specific industrial needs. For instance, enhancing its performance in catalysis and proton conduction could make it an even more valuable material, as observed in related MOFs like MIL-91(Al).

    In terms of physical characteristics, MIL-100(Al) is available as a fine powder with particle sizes ranging from 2 to 5 μm. This particle size, combined with a specific surface area exceeding 700 ㎡/g, provides an expansive surface for interactions and adsorption processes. The pore size of 0.4 to 1.0 mm within the MOF's structure is another attribute that facilitates its use in applications such as gas storage and separation.

    MIL-100(Al) is not just a catalyst; it is a testament to the versatility and adaptability of MOF technology. As research continues to uncover new ways to harness and refine its properties, MIL-100(Al) is poised to play a pivotal role in advancing the fields of catalysis, gas storage, and beyond, solidifying its place as a cornerstone in the ever-evolving landscape of materials science.

    Frequently Asked Questions (FAQ)

    Q What is the chemical formula of MIL-100(Al)?
    The chemical composition of MIL-100(Al) is Al3O(OH)(H2O)2(BTC)2·nH2O, where BTC represents 1,3,5-benzenetricarboxylate.
    Q What makes MIL-100(Al) an effective catalyst?
    Its high catalytic activity is attributed to active node sites enriched with hydroxyl and formate groups, resulting in a high turnover frequency (TOF) per node that surpasses similar structures like MIL-110.
    Q What are the typical physical properties of MIL-100(Al)?
    It typically exists as a fine powder with a particle size range of 2 to 5 μm (with specific distributions down to 0.4~0.6 μm), a specific surface area exceeding 700-800 ㎡/g, and a pore size of 0.4 to 1.0 mm.
    Q Can MIL-100(Al) be integrated into bimetallic systems?
    Yes, incorporating MIL-100(Al) with other metals like chromium creates bimetallic systems that exhibit unique magnetic properties and synergistic interactions, potentially improving overall performance.
    Q What are the primary applications for this MOF?
    MIL-100(Al) is widely researched and used for chemical catalysis (such as methanol dehydration), gas storage, gas separation, and potential proton conduction applications.