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Naphthalenedicarboxylic acid (H2ndc) can be used in the formation of metal-organic coordination polymers (MOCPs) for potential applications in various fields such as adsorption, separation, and magnetism. It can also be used as a monomer in the production of polyesters. H2ndc can also be used in the synthesis of a metal-organic framework (MOF), which can further be used as a drug carrier. Group: Hydrogen storage materials metal organic frameworks (mofs)monomers. Alternative Names: 2,6-Naphthalic Acid||||NSC 96410. CAS No. 1141-38-4. Product ID: naphthalene-2,6-dicarboxylic acid. Molecular formula: 216.19. Mole weight: C12H8O4. C1=CC2=C(C=CC(=C2)C(=O)O)C=C1C(=O)O. 1S/C12H8O4/c13-11 (14)9-3-1-7-5-10 (12 (15)16)4-2-8 (7)6-9/h1-6H, (H, 13, 14) (H, 15, 16). RXOHFPCZGPKIRD-UHFFFAOYSA-N. 99%.
(3-Aminopropyl)trimethoxysilane
97%. Uses: Aptms can be multilayered on siox substrates by a layer by layer self assembly. aptms has also been used as a silane coupling agent on silver nanoparticles.aptms is used for the synthesis of gold nano-bipyramids which can be used as substrates for c-reactive protein (crp) antibodies that were detected by localized surface plasmon resonance(lspr). mesoporous silica matrix can be incorporated with aptms for the removal of chromium (cr) from waste water. it can also be used to silanize magnetic iron oxide nanoparticles(mionps) for the separation of cross-linked enzyme aggregations (cleas) from the reaction medium. it may be coated on tio2 to improve the power conversion efficiency (pce) as a critical parameter to assess the overall performance of heterojunction perovskite solar cells (pscs). Group: Saltself-assembly materials. Alternative Names: 3-(Trimethoxysilyl)propylamine. CAS No. 13822-56-5. Pack Sizes: 5 mL/100 mL/500 mL. Product ID: 3-trimethoxysilylpropan-1-amine. Molecular formula: 179.29 g/mol. Mole weight: C6H17NO3Si. CO[Si](CCCN)(OC)OC. InChI=1S/C6H17NO3Si/c1-8-11(9-2, 10-3)6-4-5-7/h4-7H2, 1-3H3. SJECZPVISLOESU-UHFFFAOYSA-N. 0.97.
Amino-Functionalized Magnetic Nanoparticles(5mg/mL,0.5-0.6μm)
The surface of the super paramagnetic Fe3O4 nanoparticle is covalently functionalized with rich primary aliphatic amino groups, and can be used for further functionalization. Uses: Amino group functionalized magnetic nanoparticles can be used in diagnostic immunoassay, gene transfection, biomolecule separation, cell separation, enzyme immobilization, drug delivery, and biomedical imaging. Group: Nanospheres.
Carboxyl-Functionalized Magnetic Nanoparticles(5mg/mL,0.5-0.6μm)
The surface of the super paramagnetic Fe3O4 nanoparticle is covalently functionalized with rich carboxyl groups, and can be used for further functionalization. Uses: Carboxyl functionalized magnetic nanoparticles can be used in the area of diagnostic immunoassay, gene transfection, biomolecule separation, cell separation, enzyme immobilization, drug delivery, and biomedical imaging. Group: Nanospheres.
Cellulose Acetate
Cellulose acetate was used in the fabrication of gold microelectrode for electrochemical monochloramine measurement. Cellulose acetate based membranes are used in the separations in aqueous systems and in reverse osmosis process. It has been reported to be used to desalinate seawater.Cellulose acetate was used for biosensor encapsulation. It was used in the preparation of cellulose acetate nanofibre felt structure, cellulose acetate fibers. Uses: Used as a polymer (acetate fibers, yarn, and plastics), waterproofing agent (fabrics), and to make rubber and celluloid substitutes; also used in nonflammable photographic films, varnishes and lacquers, filaments, phonograph records; magnetic tapes, coatings for skins, wire insulation, thermoplastic molds, cell membranes, sewage treatment, and food packaging. Group: Natural polymers and biopolymerspolymers. Alternative Names: Acetylcellulose Cellulose Acetate 9004-35-7 Acetylcellulose Cellulose, acetate Acetate cotton Acetate ester of cellulose Acetose. CAS No. 9004-35-7. Product ID: [(2R,3S,4S,5R,6R)-5-acetyloxy-3,4,6-trihydroxyoxan-2-yl]methyl acetate. Molecular formula: 264.23g/mol. Mole weight: C10H16O8. CC(=O)OCC1C(C(C(C(O1)O)OC(=O)C)O)O. InChI=1S/C10H16O8/c1-4 (11)16-3-6-7 (13)8 (14)9 (10 (15)18-6)17-5 (2)12/h6-10, 13-15H, 3H2, 1-2H3/t6-, 7-, 8+, 9-, 10-/m1/s1. SMEGJBVQLJJKKX-HOTMZDKISA-N.
Epoxy-Functionalized Magnetic Nanoparticles(30mg/mL,0.5-0.6μm)
The surface of the super paramagnetic Fe3O4 nanoparticle is covalently functionalized with rich carboxyl groups, and can be used for further functionalization. Uses: Epoxy functionalized magnetic nanoparticles can be used in the area of diagnostic immunoassay, gene transfection, biomolecule separation, cell separation, enzyme immobilization, drug delivery, and biomedical imaging. Group: Nanospheres.
PAMAM Magnetic Nanoparticles
The surface of the super paramagnetic Fe3O4 nanoparticle is covalently functionalized with poly(ethylenimine) (PEI), and has rich amine groups, which can be used for further functionalization. Uses: Pei coated magnetic nanoparticles can be used in the area of diagnostic immunoassay, gene transfection, biomolecule separation, cell separation, enzyme immobilization, drug delivery, and biomedical imaging. Group: Nanospheres.
PEI Magnetic Nanoparticles(30mg/mL,15nm)
The surface of the super paramagnetic Fe3O4 nanoparticle is covalently functionalized with poly(ethylenimine) (PEI), and has rich amine groups, which can be used for further functionalization. Uses: Pei coated magnetic nanoparticles can be used in the area of diagnostic immunoassay, gene transfection, biomolecule separation, cell separation, enzyme immobilization, drug delivery, and biomedical imaging. Group: Nanospheres.
PVA Magnetic Nanoparticles(30mg/mL,15nm)
The surface of the super paramagnetic Fe3O4 nanoparticle is covalently functionalized with Polyvinyl acetate (PVA), and has rich amine groups, which can be used for further functionalization. Uses: Pva coated magnetic nanoparticles can be used in the area of diagnostic immunoassay, gene transfection, biomolecule separation, cell separation, enzyme immobilization, drug delivery, and biomedical imaging. Group: Nanospheres.
Silanol-Functionalized Magnetic Nanoparticles
The surface of the supperparamagnetic Fe3O4 nanoparticle is covalently functionalized with rich SiOH groups, and can be used for further functionalization. Uses: Silanols functionalized magnetic nanoparticles can be used in the area of diagnostic immunoassay, gene transfection, biomolecule separation, cell separation, enzyme immobilization, drug delivery, and biomedical imaging. Group: Nanospheres.
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