CAS 55844-94-5
:Chloromethylstyrene-divinylbenzene-styrene copolymer
Description:
Chloromethylstyrene-divinylbenzene-styrene copolymer, identified by the CAS number 55844-94-5, is a type of cross-linked polymer that exhibits a range of notable characteristics. This copolymer is primarily used in applications requiring high thermal stability, chemical resistance, and mechanical strength. The presence of chloromethyl groups enhances its reactivity, allowing for further functionalization and modification, which can be advantageous in various chemical processes. The divinylbenzene component contributes to the cross-linking density, improving the material's rigidity and dimensional stability. This copolymer is often utilized in the production of ion exchange resins, adsorbents, and as a matrix for various chemical reactions. Additionally, it demonstrates good compatibility with a variety of solvents and can be processed through standard polymer fabrication techniques. Its unique combination of properties makes it suitable for applications in fields such as water treatment, pharmaceuticals, and catalysis. However, handling precautions should be observed due to the potential hazards associated with its chlorinated components.
Formula:(C10H10·C9H9Cl·C8H8)x
InChI:InChI=1/C10H10.C9H9Cl.C8H8/c1-3-9-5-7-10(4-2)8-6-9;1-2-8-3-5-9(7-10)6-4-8;1-2-8-6-4-3-5-7-8/h3-8H,1-2H2;2-6H,1,7H2;2-7H,1H2
SMILES:C=Cc1ccc(C=C)cc1.C=Cc1ccc(cc1)CCl.C=Cc1ccccc1
Synonyms:- 1,4-Divinylbenzene
- 1-(Chloromethyl)-4-Vinyl-Benzene
- Benzene, (chloromethyl)ethenyl-, polymer with diethenylbenzene and ethenylbenzene
- Benzene, diethenyl-, polymer with (chloromethyl)ethenylbenzene and ethenylbenzene
- Benzene, ethenyl-, polymer with (chloromethyl)ethenylbenzene and diethenylbenzene
- C 1744
- Chloromethylstyrene-Divinylbenzene-Styrene Copolymer
- Chloromethylstyrene-p-divinylbenzene-styrene copolymer
- Chloromethylstyrene-styrene-divinylbenzene copolymer
- Divinylbenzene-chloromethylstyrene-styrene copolymer
- Divinylbenzene-styrene-vinylbenzyl chloride copolymer
- Divinylbenzene-styrene-vinylbenzyl chloride polymer
- Divinylbenzene-vinylbenzyl chloride-styrene copolymer
- Styrene
- Styrene-chloromethylstyrene-divinylbenzene copolymer
- Styrene-divinylbenzene-chloromethylstyrene copolymer
- Styrene-divinylbenzene-vinylbenzyl chloride copolymer
- Vinylbenzyl chloride-styrene-divinylbenzene copolymer
- See more synonyms
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Found 10 products.
Chloromethyl Polystyrene Resin cross-linked with 2% DVB (100-200mesh) (0.8-1.2mmol/g)
CAS:Color and Shape:White to Orange to Green powder to crystalChloromethyl Polystyrene Resin cross-linked with 1% DVB (100-200mesh) (2.0-3.0mmol/g)
CAS:Color and Shape:White to Light yellow powder to crystalChloromethyl Polystyrene Resin cross-linked with 1% DVB (200-400mesh) (1.5-1.8mmol/g)
CAS:Color and Shape:White to Light yellow powder to crystalChloromethyl Polystyrene Resin cross-linked with 2% DVB (200-400mesh) (2.0-2.7mmol/g)
CAS:Color and Shape:White to Light yellow powder to crystalMerrifield resin (100-200 mesh, 1.10-1.45 mmol/g)
CAS:<p>Bachem ID: 4031246.</p>Formula:naColor and Shape:Light Yellow PowderMolecular weight:n/aChloromethylstyrene-divinylbenzene-styrene copolymer
CAS:Formula:C65H65Cl3Purity:1%Color and Shape:SolidMolecular weight:952.5706Chloromethyl Polystyrene Resin cross-linked with 1% DVB (200-400mesh) (0.8-1.3mmol/g)
CAS:Color and Shape:SolidChloromethylpolystyrene resin, 100-200 Mesh Loading 2.5mmol/g, Crosslinking 1% DVB
CAS:Color and Shape:Pale to yellow to white polymer beadsChloromethylated polystyrene - 0.8-1.5meq/g, 100-200Mesh
CAS:<p>Chloromethylated polystyrene is a polymer that contains a hydroxyl group and a disulfide bond. It can be used to synthesize an asymmetric synthesis of the borane-tetrahydrofuran complex, which is an important reagent in organic synthesis. In this reaction, trifluoroacetic acid reacts with hydrogen fluoride to produce chloromethylated polystyrene. This product has been shown to be effective in preventing cancerous tissue growth and inhibiting infectious diseases by binding to nucleophilic sites on the cell surface.</p>Purity:Min. 95%





