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Mesitylene
[CAS# 108-67-8]

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Complete supplier list of Mesitylene
Identification
Classification Organic raw materials >> Hydrocarbon compounds and their derivatives >> Aromatic hydrocarbon
Name Mesitylene
Synonyms 1,3,5-Trimethylbenzene
Molecular Structure CAS # 108-67-8, Mesitylene, 1,3,5-Trimethylbenzene
Molecular Formula C9H12
Molecular Weight 120.19
CAS Registry Number 108-67-8
EC Number 203-604-4
SMILES CC1=CC(=CC(=C1)C)C
Properties
Density 0.864
Melting point -45 ºC
Boiling point 163-166 ºC
Refractive index 1.498-1.5
Flash point 44 ºC
Water solubility 2.9 g/L (20 ºC)
Safety Data
Hazard Symbols symbol symbol symbol symbol   GHS02;GHS07;GHS08;GHS09 Danger    Details
Hazard Statements H226-H304-H315-H319-H335-H411    Details
Precautionary Statements P210-P233-P240-P241-P242-P243-P261-P264-P264+P265-P271-P273-P280-P301+P316-P302+P352-P303+P361+P353-P304+P340-P305+P351+P338-P319-P321-P331-P332+P317-P337+P317-P362+P364-P370+P378-P391-P403+P233-P403+P235-P405-P501    Details
Hazard Classification
up    Details
HazardClassCategory CodeHazard Statement
Flammable liquidsFlam. Liq.3H226
Specific target organ toxicity - single exposureSTOT SE3H335
Chronic hazardous to the aquatic environmentAquatic Chronic2H411
Skin irritationSkin Irrit.2H315
Eye irritationEye Irrit.2H319
Aspiration hazardAsp. Tox.1H304
Specific target organ toxicity - single exposureSTOT SE3H336
Specific target organ toxicity - repeated exposureSTOT RE1H372
Transport Information UN 2325
SDS Available
up Discovory and Applicatios
Mesitylene, also known as 1,3,5-trimethylbenzene, is an aromatic hydrocarbon with the molecular formula C9H12. It was first synthesized in 1837 by the German chemist Robert Kane through the acid-catalyzed condensation of acetone. The name ""mesitylene"" is derived from ""mesityl,"" which refers to the Greek word ""mesos,"" meaning ""middle,"" due to its symmetrical structure with three methyl groups attached to a benzene ring at positions 1, 3, and 5. This discovery was significant in the study of aromatic compounds and provided insights into the chemistry of substituted benzenes, contributing to the broader understanding of organic chemistry.

Mesitylene is commonly used as a solvent in chemical synthesis and industrial processes. Its high boiling point (165�C) and ability to dissolve a wide range of organic compounds make it an ideal solvent for reactions requiring high temperatures.

As an intermediate, mesitylene is employed in the production of various chemicals. Its methyl groups can be selectively modified to introduce different functional groups, making it a valuable starting material for synthesizing dyes, resins, and polymers. For instance, mesitylene is used in the synthesis of trimellitic anhydride, which is an important intermediate for producing high-performance polymers and plasticizers.

Mesitylene is used as a standard in calibration for gas chromatography and mass spectrometry due to its stable and well-defined properties. It serves as a reference compound to ensure the accuracy and precision of analytical instruments.

In the petrochemical industry, mesitylene is used as a component in high-octane gasoline and jet fuels. Its high octane rating improves the performance and efficiency of engines by reducing knocking and enhancing combustion. Additionally, mesitylene's chemical stability under extreme conditions makes it a suitable additive for fuels used in aerospace and military applications.

Mesitylene is used in the formulation of specialty coatings and inks, where its solvent properties help achieve the desired viscosity and drying characteristics. It is particularly useful in applications requiring high thermal stability and chemical resistance, such as in automotive coatings and electronic component encapsulation.

References

2024. Cryogenic mesitylene-based moderator as an optimum solution for use in a DARIA compact neutron source. Atomic Energy.
DOI: 10.1007/s10512-024-01100-z

2010. Electronic structure of 9-mesityl-10-methylacridinium in ground and excited states: charge-shift mechanism introduced by counter anion shift. Physical Chemistry Chemical Physics.
DOI: 10.1039/c0cp00491j

2003. Syntheses, Structures, and Properties of Intercalation Compounds of Silver(I) Complex with [2.2]Paracyclophane. Inorganic Chemistry.
DOI: 10.1021/ic0302433
Market Analysis Reports
List of Reports Available for Mesitylene
Related Products
Metalaxyl  Metalaxyl-M  Mesaconitine  Mesalamine 13C6  Mesalazine (Mesalamine) EP Impurity J DiHCl  Mesatlantin C  Mesitaldehyde  Mesitylacetonitrile  Mesitylacetyl chloride  Mesityldiphenylsulfonium 4-methylbenzenesulfonate  2,4-Mesitylenedisulfonyl dichloride  2-Mesitylenesulfonyl chloride  2-Mesitylenesulfonyl chloride  O-Mesitylenesulfonylhydroxylamine  1-(2-Mesitylenesulfonyl)imidazole  1-(Mesitylene-2-sulfonyl)-3-nitro-1,2,4-triazole  N-Mesitylenesulfonyl-1,2,4-triazole  9-Mesityl-10-methylacridinium tetrafluoroborate  Mesityl oxide  MES monohydrate