Rod Neodymium Magnets for Magnetic Bead Separation Rack, Magnet Racks, Magnetic bead separation system cylinder magnets, Neodymium Iron Boron (NdFeB) magnets for Magnetic Separation Rack, rod rare earth magnets
Rod Neodymium Magnets for Magnetic Bead Separation Rack Parameter
Type:Permanent
Composite:NdFeB Magnet
Shape:cylinder
Application:Industrial Magnet
Material:Sintered Neodymium magnet-cylinder
Product Name:Strong Neodymium Magnet
Grade: N48
Size:5*26mm
Certification:ISO, SGS
Magnetism direction:thickness
Sample:Avaliable
Tolerance:0.05mm ~ 0.1mm
Coating:nickel
MOQ:10 PCS
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Customized (Block, Disc, Cylinder, Bar, Ring, Countersunk, Segment, Hook, Trapezoid, Irregular shapes, etc)
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N52/Customized (N33 N35 N38 N40 N42 N45 N48 N50 N52 ……)
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Ni-Cu-Ni,Nickel Customized (Zn,Ni-Cu-Ni,Ni,Gold, Silver, Copper, Epoxy, Chrome, etc)
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Thickness Magnetized, Axially Magnetized,
Diametrally Magnetized, Multi-poles magnetized,
Radial Magnetized. (Customzied specific requirements magnetized)
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Max. Working
Temperature
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Grade
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Max. Operating Temperatures
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N35-N52
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80°C (176°F)
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33M- 48M
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100°C (212°F)
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33H-48H
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120°C (248°F)
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30SH-45SH
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150°C (302°F)
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30UH-40UH
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180°C (356°F)
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28EH-38EH
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200°C (392°F)
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28AH-35AH
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220°C (428°F)
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Magnetic bead separation system consists of three parts: the magnetic bead, test tube and magnetic bead separation rack. Neodymium magnets will provide the strong enough magnetic field to magnetize superpara magnetic nanoparticles, and thus magnetic bead can be quickly secured. It should be noted that neodymium magnets for magnetic bead separation risk should have superior dimensional, appearance and magnetic performance consistency.
Magnetic bead separation technology has gained a series of remarkable research results in molecular biology, cytology, immunology and biochemistry since early 1970s. The targets to be separated can be efficiently enriched by utilizing the combination between surface modified magnetic particles and biomolecule or cell.
Magnetic bead is a kind of microsphere carrier with certain magnetism and structure which fabricated by the combination of superparamagnetic particles and organic polymer. The outermost layer of magnetic bead is the functional group which can exhibit different physical properties according to the type of functional group (e.g. –OH, -COOH, -CHO, -NH2, -SH, -CONO2, -CONH2) include Hydrophobic-Hydrophilic, polar-nonpolar and positive chargre-negative charge, therefore, magnetic bead can combine with different ligands base on above physical properties, such as anti-body, antigen, DNA and RNA. Magnetic bead also show magnetic response under the external magnetic field. Multipole Radial Ferrite Magnet Ring Tube Shaped
Magnetic nanoparticles are so useful because they can be immobilised and re-suspended easily by moving them in and out of a magnetic field. The simplest way to do this is by using immobilisation racks consisting of magnet arrays, either for a microtube or microplate format.
Despite their simple construction and lack of moving parts, commercially available immobilization racks are surprisingly expensive. However, they can be assembled easily and cheaply in a laboratory setting. The most critical component of the rack are the magnets themselves- in order to achieve rapid separation, it is best to use high-quality neodymium magnets, N42 grade or above.
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