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08650

Supelco

Chlorobenzene

analytical standard

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About This Item

Empirical Formula (Hill Notation):
C6H5Cl
CAS Number:
Molecular Weight:
112.56
Beilstein/REAXYS Number:
605632
EC Number:
MDL number:
UNSPSC Code:
41116107
PubChem Substance ID:
NACRES:
NA.24

Pricing and availability is not currently available.

grade

analytical standard

Quality Level

vapor density

3.86 (vs air)

vapor pressure

11.8 mmHg ( 25 °C)

assay

≥99.7% (GC)

autoignition temp.

1178 °F

shelf life

limited shelf life, expiry date on the label

expl. lim.

7.1 %

refractive index

n20/D 1.524 (lit.)
n20/D 1.525

bp

132 °C (lit.)

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1 of 4

This Item
RTC000099CX0855319996
grade

analytical standard

grade

certified reference material, pharmaceutical secondary standard

grade

-

grade

ACS reagent

format

neat

format

-

format

-

format

-

vapor density

3.86 (vs air)

vapor density

3.86 (vs air)

vapor density

-

vapor density

3.86 (vs air)

vapor pressure

11.8 mmHg ( 25 °C)

vapor pressure

11.8 mmHg ( 25 °C)

vapor pressure

12 hPa ( 20 °C)

vapor pressure

11.8 mmHg ( 25 °C)

assay

≥99.7% (GC)

assay

-

assay

≥99.5% (GC)

assay

≥99.5%

autoignition temp.

1178 °F

autoignition temp.

1178 °F

autoignition temp.

-

autoignition temp.

1178 °F

General description

Pure chlorobenzene is an aromatic organic compound most commonly used as a solvent and as a precursor in chemical syntheses. It is an intermediate in dyes and pesticide production and used in insect repellents, deodorants, and degreasers.[1][2]

Application

Chlorobenzene may be used as an extraction solvent in the determination of chlorophenols in water samples[3] and triazine herbicides in aqueous samples[4] by chromatography techniques.

signalword

Warning

Hazard Classifications

Acute Tox. 4 Inhalation - Aquatic Chronic 2 - Flam. Liq. 3 - Skin Irrit. 2

Storage Class

3 - Flammable liquids

wgk_germany

WGK 2

flash_point_f

80.6 °F

flash_point_c

27 °C

ppe

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


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    Determination of chlorobenzenes in water by drop-based liquid-phase microextraction and gas chromatography-electron capture detection
    Tor A
    Journal of Chromatography A, 1125(1), 129-132 (2006)
    Determination of triazine herbicides in aqueous samples by dispersive liquid-liquid microextraction with gas chromatography-ion trap mass spectrometry
    Nagaraju D and Huang SD
    Journal of Chromatography A, 1161(1-2), 89-97 (2007)
    Determination of chlorophenols in water samples using simultaneous dispersive liquid--liquid microextraction and derivatization followed by gas chromatography-electron-capture detection.
    Fattahi N, et al.
    Journal of Chromatography A, 1157(1-2), 23-29 (2007)
    Wei-Chao Chen et al.
    ACS applied materials & interfaces, 7(8), 4616-4622 (2015-02-11)
    Controlled dispersion of single-walled carbon nanotubes (SWCNTs) in common solvents is a challenging issue, especially for the rising need of low cost flexible transparent conducting films (TCFs). Utilizing conductive polymer as surfactant to facilitate SWCNTs solubility is the most successful
    Kwanpyo Kim et al.
    Nature communications, 5, 4781-4781 (2014-09-03)
    One-dimensional defects in graphene have a strong influence on its physical properties, such as electrical charge transport and mechanical strength. With enhanced chemical reactivity, such defects may also allow us to selectively functionalize the material and systematically tune the properties

    Protocols

    GC Analysis of Xylene Isomers on SLB®-IL60 - The cresol (methylphenol) isomers are also precursors to many chemicals. This chromatogram of a mix of aromatic and methylphenol compounds was generated using an SLB-IL60 ionic liquid column. Its interaction mechanisms allow the separation of all three xylene isomers, and all three cresol isomers.

    GC Analysis of Class 2 Residual Solvents on OVI-G43

    US EPA Method TO-17: GC Analysis of Volatiles on VOCOL® after Collection/Desorption using Air Toxics Tube

    US EPA Method 8260 describes the analysis of volatile organic compounds in solid wastes and ground waters. This application illustrates the analysis of many compounds commonly analyzed by this method using purge and trap coupled to GC-MS.

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