Sigma-Aldrich™ Silica, Mesoporous SBA-15, 5g

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Hexagonal pore morphology

Termini e condizioni
Garanzia di rimborso di 30 giorni
Spedizione: 2-3 giorni lavorativi

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    Specifications:
    Application Analytical Chemistry
    Storage Temperature Ambient
    Product Type Laboratory Chemical Forms Powder
    Product Brand Sigma-Aldrich
    Product Grade Molecular Biology

    Sigma-Aldrich™ Silica mesoporous SBA-15 is a highly ordered mesoporous silica material characterized by its hexagonal pore morphology, high surface area (450–550 m²/g), and uniform pore size (8 nm). With particle sizes under 150 µm, SBA-15 is widely used in catalysis, separation science, adsorption, imaging, and drug delivery research.

    SBA-15 silica features thick pore walls, large pore volumes (0.8–1.0 cm³/g), and exceptional thermal stability, making it an ideal support for functionalization and advanced material design.

    Chemical Identifiers

    PropertyValue
    Linear FormulaSiO₂
    CAS Number7631-86-9
    Molecular Weight60.08 g/mol
    EC Number231-545-4
    MDL NumberMFCD00011232
    PubChem ID329769030
    SMILESO=[Si]=O
    InChI1S/O2Si/c1-3-2
    InChI KeyVYPSYNLAJGMNEJ-UHFFFAOYSA-N

    Specifications

    PropertySpecification
    Quality Level100
    Assay99.9% trace metals basis
    FormPowder
    Particle Size<150 μm
    Pore Size8 nm (Hexagonal morphology)
    Pore Volume0.8–1.0 cm³/g
    Surface Area450–550 m²/g
    Melting Point>1600 °C (lit.)
    Boiling Point2230 °C (lit.)

    Applications

    • Catalysis: High surface area and uniform pore network support heterogeneous catalysts.
    • Chromatography & Separation: Used as a stationary phase or for molecular sieving.
    • Drug Delivery Systems: Nanostructured carrier for controlled release formulations.
    • Imaging & Nanomaterials Research: Template and support for hybrid nanostructures.
    • Adsorption & Filtration: Effective for gas and liquid adsorption processes.


    The Sigma-Aldrich™ SBA-15 Mesoporous Silica is a research-grade material engineered with ordered hexagonal pores and exceptional textural properties. Its combination of large pore size (8 nm), high surface area, and thermal stability makes it a versatile tool in catalysis, nanotechnology, biomedical research, and material science applications.

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