2-Phenylethyl Bromide
2-Phenylethyl Bromide

2-Phenylethyl Bromide

2-Phenylethyl Bromide Specification

  • Molecular Weight
  • 185.06 g/mol
  • Smell
  • Aromatic, pungent odor
  • Boiling point
  • 220-222 C
  • Refractive Rate
  • n20/D 1.568
  • Structural Formula
  • C6H5CH2CH2Br
  • Molecular Formula
  • C8H9Br
  • HS Code
  • 29036990
  • Classification
  • Alkyl Halide (Organic Bromide)
  • Grade
  • Industrial, Laboratory
  • Purity
  • 98% - 99%
  • Application
  • Pharmaceutical intermediates, Organic synthesis
  • Appearance
  • Clear colorless to pale yellow liquid
  • CAS No
  • 103-63-9
  • EINECS No
  • 203-130-8
  • Other Names
  • Bromoethylbenzene, Benzeneethanebromide, Phenethyl bromide
  • Usage
  • Raw material for pharmaceuticals, agrochemicals, and fine chemicals
  • Melting Point
  • < -40 C
  • Density
  • 1.397 Gram per cubic centimeter(g/cm3)
  • Solubility
  • Insoluble in water; soluble in organic solvents (ethanol, ether)
  • Raw Material
  • Benzene, Ethylene Bromide
 

2-Phenylethyl Bromide Trade Information

  • FOB Port
  • Janpt
  • Supply Ability
  • Sample Available
  • Yes
  • Sample Policy
  • Sample costs shipping and taxes has to be paid by the buyer
  • Packaging Details
  • LDPE Bags/ LDPE Drums
  • Main Domestic Market
  • All India
  • Certifications
  • ISO Certified
 

About 2-Phenylethyl Bromide

Name of Product Beta-Phenyl Ethyl Bromide
CAS No 103-63-9
Formula C8H9Br
IUPAC Name 2-bromoethylbenzene
InChI InChI=1S/C8H9Br/c9-7-6-8-4-2-1-3-5-8/h1-5H,6-7H2
InChI Key WMPPDTMATNBGJN-UHFFFAOYSA-N
Canonical SMILES C1=CC=C(C=C1)CCBr
CAS 103-63-9
EC Number 203-130-8
UNII 96O442668X
Wikipedia 2-Phenylethylbromide
Description Clear, colorless to yellow colored liquid
Purity by GC Not less than 98.0%
Acidity Not more than 0.1 %
Water Not more than 0.2 %
Other name / synonyms (2-BROMOETHYL)BENZENE

Phenethyl bromide

103-63-9

2-Phenylethyl bromide

Benzene, (2-bromoethyl)-

Phenylethyl bromide

1-Bromo-2-phenylethane

2-Phenethyl bromide

2-Phenyl-1-bromoethane

beta-Bromoethylbenzene

.beta.-Bromoethylbenzene

Bromoethylbenzene

Polystyrene A-Br

3-Bromoethylbenzene

Benzene, bromoethyl-

.beta.-Phenethyl bromide

NSC 33926

(2-Bromoethyl)polystyrene

.beta.-Phenylethyl bromide

Phenylethyl bromide (VAN)

2-(BROMOETHYL)BENZENE

HSDB 5352

WMPPDTMATNBGJN-UHFFFAOYSA-N

EINECS 203-130-8

AI3-11264

phenethylbromide

phenethyl bromine

phenylethylbromide

2-bromoethylbenzen

2-phenylethylbromide

(2bromoethyl)benzene

2-bromo-ethylbenzene

2-bromoethyl benzene

2-bromoethyl-benzene

2-Bromoethyl)benzene

beta-phenylethylbromide

(2-phenyl)bromoethane

1-(bromoethyl)benzene

2-phenyl ethyl bromide

2-phenyl-ethyl bromide

ar-Monobromoethylbenzene

(2-bromo ethyl)benzene

(2-bromoethyl) benzene

1-phenyl-2-bromoethane

2-(bromo-ethyl)benzene

2-(bromoethyl)-benzene

(2-Bromoethyl)-benzene

(2-bromo-ethyl)-benzene

ACMC-1BQ3U

2-phenyl-1-ethyl bromide

AC1L1PA3

AC1Q27TI

SCHEMBL1552

DSSTox_CID_13876

DSSTox_RID_79100

1-(2-bromo-ethyl)-benzene

DSSTox_GSID_33876

B65780_ALDRICH

KSC174Q4D

MLS001055470

81535_ALDRICH

Jsp000371

CHEMBL1340745

81535_FLUKA

CTK0H4841

MolPort-000-151-983

BB_SC-6958

HMS3039C09

UNII-96O442668X

NSC 6534

NSC33926

STR01487

EINECS 250-734-2

Tox21_200102

ANW-14941

AR-1C5119

BBL027290

NSC-33926

SBB059945

ZINC01665971

AKOS005216002

AN-6149

MCULE-6003855472

RP24508

RTR-000846

NCGC00090999-01

NCGC00090999-02

NCGC00257656-01

AJ-29009

AK-54085

BC203736

BP-30043

CAS-103-63-9

CJ-06049

CJ-26944

K795

KB-01018

KB-30565

LS-29200

SMR001227201

DB-002310

DB-020722

ST2407878

TR-000846

96O442668X

B0594

FT-0604607

FT-0607456

ST51046210

M-6016

29458-EP2311840A1

29458-EP2311842A2

A800773

I01-0451

I01-0633

I01-5328

3B3-020240

107175-46-2




Highly Pure Organic Bromide

2-Phenylethyl Bromide is distinguished by its high purity range, making it well-suited for precision-driven applications in synthesis. Its stability at standard temperatures and pressures ensures consistent performance, further supported by tightly sealed storage to preserve quality and light-sensitive attributes.


Versatile Applications and Benefit

This compound serves as a crucial intermediate in pharmaceutical manufacturing, organic synthesis, and agrochemical production. Its solubility in various organic solvents enhances its utility in laboratory and industrial processes, facilitating efficient reactions and broadening its application spectrum.


Safe Handling and Transportation

Classified as hazardous (Hazard Class 6.1), 2-Phenylethyl Bromide must be handled with caution. Secure storage in cool, dry conditions and careful handling during transportation, as per UN Number 1993 guidelines, reduce risks and maintain product integrity.

FAQs of 2-Phenylethyl Bromide:


Q: How should 2-Phenylethyl Bromide be stored to ensure its stability?

A: It should be kept in tightly closed containers in a cool, dry place, away from direct light to prevent darkening and to maintain stability under normal temperatures and pressures.

Q: What are the primary uses of 2-Phenylethyl Bromide in industry?

A: It is predominantly used as a key intermediate in the synthesis of pharmaceuticals, agrochemicals, and fine chemicals due to its reactivity and purity.

Q: When is it necessary to transport 2-Phenylethyl Bromide under hazard regulations?

A: Whenever it is shipped, it must comply with Hazard Class 6.1 and UN Number 1993 transport guidelines due to its toxic properties, ensuring safe handling and transit.

Q: Where should this compound be utilized within the laboratory or manufacturing processes?

A: It is ideal for environments where organic synthesis and pharmaceutical intermediates are produced, particularly those requiring solvents such as ethanol or ether for reaction efficiency.

Q: What is the process for using 2-Phenylethyl Bromide as a synthetic intermediate?

A: In organic synthesis, it is typically dissolved in a suitable organic solvent and reacted with other chemicals to produce more complex molecules, leveraging its bromide functionality for further substitution or coupling reactions.

Q: What are the benefits of choosing 2-Phenylethyl Bromide in chemical synthesis?

A: Its high purity, stable nature, and excellent solubility in organic solvents contribute to reliable yields, consistent performance, and versatility in a range of synthetic applications.

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