Monodispersed magnetite microspheres
Matrix: Fe3O4, surface group: -Epoxy, particle size: 100-200 nm, unit: 5mg/ml
- Product Code: 94706
CAS:
1317-61-9
Molecular Weight: | 231.53 g./mol | Molecular Formula: | Fe₃O₄ |
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EC Number: | 215-277-5 | MDL Number: | MFCD00011010 |
Melting Point: | 1538 °C(lit.) | Boiling Point: | |
Density: | Storage Condition: | 2-8°C |
Product Description:
Monodispersed magnetite microspheres are widely used in biomedical applications due to their magnetic properties and uniform size. They are commonly employed in magnetic resonance imaging (MRI) as contrast agents to enhance image clarity and improve diagnostic accuracy. In drug delivery systems, these microspheres enable targeted therapy by guiding drugs to specific sites in the body using external magnetic fields, minimizing side effects and increasing treatment efficiency. They are also utilized in cell separation and purification processes, where their magnetic nature allows for the isolation of specific cell types from complex mixtures. Additionally, these microspheres play a role in hyperthermia treatment for cancer, where they generate heat under an alternating magnetic field to destroy tumor cells. Their uniformity and magnetic responsiveness make them valuable in various research and industrial applications, including biosensing and environmental remediation.
Product Specification:
Test | Specification |
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PARTICLE SIZE | 100-200 |
SURFACE GROUP | -Epoxy |
ICP: CONFIRMS FE COMPONENT | Confirmed |
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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1.000 | 10-20 days | ฿1,060.00 |
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5.000 | 10-20 days | ฿2,740.00 |
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Monodispersed magnetite microspheres
Monodispersed magnetite microspheres are widely used in biomedical applications due to their magnetic properties and uniform size. They are commonly employed in magnetic resonance imaging (MRI) as contrast agents to enhance image clarity and improve diagnostic accuracy. In drug delivery systems, these microspheres enable targeted therapy by guiding drugs to specific sites in the body using external magnetic fields, minimizing side effects and increasing treatment efficiency. They are also utilized in cell separation and purification processes, where their magnetic nature allows for the isolation of specific cell types from complex mixtures. Additionally, these microspheres play a role in hyperthermia treatment for cancer, where they generate heat under an alternating magnetic field to destroy tumor cells. Their uniformity and magnetic responsiveness make them valuable in various research and industrial applications, including biosensing and environmental remediation.
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