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Key Documents

V900147

Sigma-Aldrich

Hexadecane

Vetec, reagent grade, 98%

Synonym(s):

n-Hexadecane, Cetane

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About This Item

Linear Formula:
CH3(CH2)14CH3
CAS Number:
Molecular Weight:
226.44
Beilstein:
1736592
EC Number:
MDL number:
UNSPSC Code:
12352100
PubChem Substance ID:

grade

reagent grade

vapor density

7.8 (vs air)

vapor pressure

1 mmHg ( 105.3 °C)

product line

Vetec

Assay

98%

form

solid or liquid

autoignition temp.

395 °F

refractive index

n20/D 1.434 (lit.)

bp

287 °C (lit.)

mp

18 °C (lit.)

transition temp

solidification point 17.5-18.5 °C

density

0.773 g/mL at 25 °C (lit.)

SMILES string

CCCCCCCCCCCCCCCC

InChI

1S/C16H34/c1-3-5-7-9-11-13-15-16-14-12-10-8-6-4-2/h3-16H2,1-2H3

InChI key

DCAYPVUWAIABOU-UHFFFAOYSA-N

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Legal Information

Vetec is a trademark of Merck KGaA, Darmstadt, Germany

Pictograms

Health hazard

Signal Word

Danger

Hazard Statements

Precautionary Statements

Hazard Classifications

Asp. Tox. 1

Supplementary Hazards

Storage Class Code

10 - Combustible liquids

WGK

WGK 1

Flash Point(F)

275.0 °F - closed cup

Flash Point(C)

135 °C - closed cup


Certificates of Analysis (COA)

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Jaejoon Jung et al.
Microbial ecology, 70(4), 912-921 (2015-05-10)
Red clay was previously used to enhance bioremediation of diesel-contaminated soil. It was speculated that the enhanced degradation of diesel was due to increased bacterial growth. In this study, we selected Acinetobacter oleivorans DR1, a soil-borne degrader of diesel and
Kata Farkas et al.
Food and environmental virology, 7(3), 261-268 (2014-10-25)
Adsorption to aquifer media is an important process in the removal of viruses from groundwater. Even though hydrophobic interactions have been shown to contribute to adsorption, little is known about the hydrophobicity of viruses found in groundwater. In this study
Gibum Kwon et al.
Advanced materials (Deerfield Beach, Fla.), 24(27), 3666-3671 (2012-06-13)
In this work, the first-ever membrane-based single unit operation that enables gravity driven, on-demand separation of various oil-water mixtures is developed. Using this methodology, the on-demand separation of free oil and water, oil-in-water emulsions, and water-in-oil emulsions is demonstrated, with
Motoyasu Kobayashi et al.
Langmuir : the ACS journal of surfaces and colloids, 28(18), 7212-7222 (2012-04-17)
The surface wettabilities of polymer brushes with hydrophobic and hydrophilic functional groups were discussed on the basis of conventional static and dynamic contact angle measurements of water and hexadecane in air and captive bubble measurements in water. Various types of
Measurements of anisotropic (off-axis) friction-induced motion.
Kai Kristiansen et al.
Advanced materials (Deerfield Beach, Fla.), 24(38), 5236-5241 (2012-07-21)

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