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High-Performance KAUST-7 MOFs - China Suppliers and Factory for Chemical Stability and CO2 Adsorption

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KAUST-7, also referred to as NbOFFIVE-1-Ni, is a cutting-edge material renowned for its superior characteristics. With longer Nb–O and Nb–F bond lengths compared to Si–F (1.899 Å for Nb–F versus 1.681 Å for Si–F), KAUST-7 features larger anionic octahedra that effectively pillared the square grid, resulting in a reduced pore size. This unique structure has garnered significant interest from China suppliers and factory producers due to its exceptional chemical and thermal stability. Additionally, KAUST-7 demonstrates remarkable tolerance to moisture and H2S, making it an ideal choice for applications requiring high CO2 adsorption selectivity over H2 and CHTrust in our reliable China suppliers and factory for your KAUST-7 needs to experience top-tier performance in advanced material applications

    Product Name KAUST-7
    Particle size 0.6~1.1μm
    Specific surface area ≥200㎡/g
    Pore size 0.3~0.5 nm

    The crystallography of KAUST-7 at 296 K reveals a tetragonal symmetry, belonging to the space group I4/mcm, with unit cell parameters that highlight its well-ordered structure. The unit cell dimensions, with 'a' and 'b' equaling 9.942(4) Å and 'c' measuring 15.764(6) Å, contribute to the material's distinctive pore architecture. This fine-tuning of the pore dimensions is pivotal for enhancing CO2 interaction, particularly in terms of the enthalpy of absorption, a critical factor for selective gas adsorption processes.

    KAUST-7 has garnered significant attention in the scientific community due to a multitude of desirable properties. Its high chemical and thermal stability, coupled with exceptional water and H2S tolerance, positions it as a robust candidate for applications in harsh environments. Moreover, the material's high CO2 adsorption selectivity over H2 and CH4 makes it an attractive option for carbon capture and storage initiatives, which are essential for mitigating the impact of greenhouse gas emissions.

    KAR-F32 KAUST-7

    In terms of physical attributes, KAUST-7 is available in a particle size range of 1000-5000 nm, offering a substantial specific surface area of at least 170 ㎡/g. The pore size of 0.3-0.5 nm is finely tuned for molecular sieving, enabling the selective adsorption of gases, which is vital for various separation processes in industrial applications.

    The development of KAUST-7 underscores the ongoing advancements in the field of MOFs, highlighting the potential for designing materials with tailored properties to address specific challenges in gas storage, separation, and environmental management. As research progresses, the unique characteristics of KAUST-7 are expected to play a significant role in the development of sustainable technologies that can contribute to a cleaner and more efficient future.

    Frequently Asked Questions

    What is the crystal structure and symmetry of KAUST-7?
    KAUST-7 at 296 K exhibits a tetragonal symmetry and belongs to the space group I4/mcm. It has unit cell dimensions of 'a' and 'b' equal to 9.942(4) Å, and 'c' measuring 15.764(6) Å, which defines its unique pore architecture.
    What are the primary physical properties of KAUST-7?
    KAUST-7 features a particle size range of 0.6~1.1μm (with bulk attributes ranging from 1000-5000 nm), a specific surface area of ≥170 to 200 ㎡/g, and a precisely structured pore size of 0.3~0.5 nm.
    How does KAUST-7 perform in harsh chemical environments?
    KAUST-7 is highly stable both chemically and thermally. It offers exceptional tolerance to water and hydrogen sulfide (H2S), making it highly suitable for applications in challenging industrial conditions.
    Why is KAUST-7 effective for carbon capture initiatives?
    The material possesses a high selectivity for CO2 adsorption over H2 and CH4. Its fine-tuned pore dimensions enhance CO2 interaction and absorption enthalpy, which is critical for efficient carbon capture and storage.
    What makes KAUST-7 suitable for molecular sieving?
    With a finely tuned pore size of 0.3-0.5 nm, KAUST-7 acts as an efficient molecular sieve, enabling the highly selective separation and adsorption of specific gas molecules in industrial processes.