Magnetic particles embedded in SiO2

Matrix: SiO2, surface group:-NH2, particle size: 4-5μm, unit 10mg/ml

  • Product Code: 234278
  Alias:    SiO2; Silica magnetic microspheres Silica microspheres
  CAS:    14808-60-7
Molecular Weight: 60.08 g./mol Molecular Formula: SiO₂
EC Number: 238-878-4 MDL Number: MFCD00011232
Melting Point: 1610 °C(lit.) Boiling Point: 2230 °C
Density: 2.6 g/mL at 25 °C(lit.) Storage Condition: Room temperature
Product Description: Used in biomedical applications such as targeted drug delivery, where the silica coating enables easy functionalization with drugs or biomolecules while protecting the magnetic core. The particles can be guided to specific sites in the body using external magnetic fields, improving treatment precision. Also employed in magnetic separation of cells, DNA, or proteins due to their stable dispersion and high surface area. Common in diagnostic assays and biosensors for rapid detection of pathogens. Applied in environmental remediation to remove pollutants from water, where magnetic retrieval allows reuse. Suitable for catalysis support, where the silica shell stabilizes catalysts and enables magnetic recovery after reaction.
Sizes / Availability / Pricing:
Size Availability Price Quantity
5ml 10-20 days $88.25
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-
25ml 10-20 days $387.06
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Magnetic particles embedded in SiO2
Used in biomedical applications such as targeted drug delivery, where the silica coating enables easy functionalization with drugs or biomolecules while protecting the magnetic core. The particles can be guided to specific sites in the body using external magnetic fields, improving treatment precision. Also employed in magnetic separation of cells, DNA, or proteins due to their stable dispersion and high surface area. Common in diagnostic assays and biosensors for rapid detection of pathogens. Applied in environmental remediation to remove pollutants from water, where magnetic retrieval allows reuse. Suitable for catalysis support, where the silica shell stabilizes catalysts and enables magnetic recovery after reaction.
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