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Key Documents

436887

Sigma-Aldrich

4-Vinylbenzyl chloride

90%

Sinônimo(s):

4-(Chloromethyl)styrene

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About This Item

Fórmula linear:
H2C=CHC6H4CH2Cl
Número CAS:
Peso molecular:
152.62
Beilstein:
2204384
Número CE:
Número MDL:
Código UNSPSC:
12162002
ID de substância PubChem:
NACRES:
NA.23

Nível de qualidade

Ensaio

90%

forma

liquid

contém

500 ppm tert-butylcatechol as inhibitor

índice de refração

n20/D 1.572 (lit.)

viscosidade

1,830 cP(25 °C)(lit.)

pb

229 °C (lit.)

densidade

1.083 g/mL at 25 °C (lit.)

temperatura de armazenamento

2-8°C

cadeia de caracteres SMILES

ClCc1ccc(C=C)cc1

InChI

1S/C9H9Cl/c1-2-8-3-5-9(7-10)6-4-8/h2-6H,1,7H2

chave InChI

ZRZHXNCATOYMJH-UHFFFAOYSA-N

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Descrição geral

4-Vinylbenzyl chloride (VBC) is commonly used as a monomer that belongs to the class of aryl chlorides and contains both a vinyl group (CH2=CH-) and a benzyl chloride group (C6H4CH2Cl) in its structure. It is used as a reactive building block in various polymerization reactions to synthesize different types of polymers with excellent thermal stability, chemical resistance and good film-forming properties. It is commonly utilized in the production of resins, coatings, adhesives, and ion-exchange resins. It offers versatility in polymer synthesis, allowing for the introduction of desired functionalities into polymers.

It is also:
  • A component of ion exchange resins, photo-resist polymers, cross-linkable fibers, coupling agents and electroconducting polymers.
  • Starter for various copolymer preparations.
  • Dual functional monomer. Readily derivatized by chloride displacement.

Aplicação

4-Vinylbenzyl chloride can be used as a monomer to synthesize:
  • The hypercross-linked polymer for supercapacitor applications. Incorporation of 4-vinyl benzyl chloride contributes to the formation of a porous structure and specific surface area which facilitate efficient electrolyte ion diffusion and provide ample sites for charge storage, leading to enhanced electrochemical performance.
  • The polymeric thin films by the matrix-assisted pulsed laser evaporation (MAPLE) technique. The resulting polymeric thin films can exhibit non-linear optical effects such as optical second harmonic generation, electro-optic modulation, or optical frequency conversion. These properties make them suitable for various applications in non-linear optic devices.

Pictogramas

Skull and crossbonesCorrosion

Palavra indicadora

Danger

Frases de perigo

Classificações de perigo

Acute Tox. 3 Dermal - Acute Tox. 4 Oral - Eye Dam. 1 - Skin Corr. 1B - Skin Sens. 1

Código de classe de armazenamento

6.1A - Combustible acute toxic Cat. 1 and 2 / very toxic hazardous materials

Classe de risco de água (WGK)

WGK 3

Ponto de fulgor (°F)

219.2 °F - closed cup

Ponto de fulgor (°C)

104 °C - closed cup

Equipamento de proteção individual

Faceshields, Gloves, Goggles, type ABEK (EN14387) respirator filter


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Chemistry of Materials, 16, 2282-2286 (2004)
Polymer Preprints (American Chemical Society, Division of Polymer Chemistry), 43, 140-141 (2002)
Chemistry of Materials, 16, 2648-2655 (2004)
Liwei Qian et al.
Analytica chimica acta, 884, 97-105 (2015-06-16)
Structural stability of the template is one of the most important considerations during the preparation of protein imprinting technology. To address this limitation, we propose a novel and versatile strategy of utilizing macromolecularly functional monomers to imprint biomacromolecules. Results from
Juanjuan Feng et al.
Analytical and bioanalytical chemistry, 407(23), 7025-7035 (2015-07-30)
Ionic liquids (ILs) have been efficiently used as a "designer sorbent" in sample preparation. A novel 1-(3-aminopropyl)-3-(4-vinylbenzyl)imidazolium 4-styrenesulfonate IL monomer was synthesized and copolymerized with 1,6-di(3-vinylimidazolium) hexane bishexafluorophosphate IL as cross-linking agent to prepare a cross-linked polymeric ionic liquids (PILs)

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