Interesting facts
Interesting Facts about 1-Methoxy-4-methyl-benzene
1-Methoxy-4-methyl-benzene, commonly known as p-anisole, is a fascinating compound with a variety of applications and characteristics. Here are some points to consider:
- Nature and Structure: As an aromatic ether, 1-methoxy-4-methyl-benzene consists of a benzene ring substituted with a methoxy group (-OCH3) and a methyl group (-CH3). This unique structure contributes to its chemical reactivity and solubility.
- Industrial Applications: The compound is widely used as a solvent in organic synthesis and as a flavoring agent in the food industry due to its pleasant anise-like aroma.
- Research Significance: Scientists often utilize p-anisole as a model compound in the study of reaction mechanisms involving ethers and phenolic compounds.
- Biological Activity: Some studies have suggested that 1-methoxy-4-methyl-benzene may exhibit antimicrobial properties, making it a subject of interest in the field of medicinal chemistry.
- Versatile Synthesis: It can be synthesized through several methods, including the methylation of phenol, highlighting the versatility of organic synthesis techniques.
As you can see, 1-methoxy-4-methyl-benzene is not just another simple organic compound; it plays a significant role in various fields, from industrial applications to academic research. Its unique properties and structure open the door to exciting possibilities in chemistry!
Synonyms
4-Methylanisole
1-METHOXY-4-METHYLBENZENE
104-93-8
p-Methylanisole
4-Methoxytoluene
p-Methoxytoluene
Benzene, 1-methoxy-4-methyl-
p-Cresol methyl ether
p-Cresyl methyl ether
p-methyl anisole
Anisole, p-methyl-
4-Methyl anisole
Methyl p-cresol
Methyl p-tolyl ether
p-Tolyl methyl ether
para-Methylanisole
Methyl p-cresyl ether
1-Methyl-4-methoxybenzene
4-Methyl-1-methoxybenzene
4-Methylphenol methyl ether
Methyl 4-methylphenyl ether
Methyl-para-cresol
para-Methoxytoluene
Methyl p-methylphenyl ether
para-Cresyl methyl ether
p-methylanisol
Toluene, 4-methoxy-
FEMA No. 2681
FEMA Number 2681
para-methyl anisole
1-Methoxy-4-methyl-benzene
NSC 6254
HSDB 5363
4-Methylanizole
EINECS 203-253-7
para-Methyl anisol
10FAI0OR9W
4-methylmethoxybenzene
DTXSID9026710
AI3-07621
NSC-6254
4-CRESOL METHYL ETHER
P-METHYLANISOLE [FHFI]
CHEMBL154155
DTXCID306710
P-METHYL ANISOLE [FCC]
CHEBI:89728
EC 203-253-7
1-METHOXY-4-METHYLBENZENE [HSDB]
4-methylanisol
PARA-CRESOL DEUTEROMETHYL ETHER
MFCD00008413
UNII-10FAI0OR9W
pMethoxytoluene
pMethylanisole
4Methoxytoluene
Methylparacresol
Methyl pcresol
paraMethylanisole
4Methyl anisole
p- methylanisole
Anisole, pmethyl
paraMethoxytoluene
p-Methyl-Anisole
p-Methoxy toluene
4-methoxy-toluene
Toluene, 4methoxy
Methyl ptolyl ether
pTolyl methyl ether
Methyl pcresyl ether
pCresol methyl ether
pCresyl methyl ether
1Methyl4methoxybenzene
4Methyl1methoxybenzene
paraCresyl methyl ether
4-Methylanisole (MSO)
P- METHOXYTOLUENE
4-Methylanisole, 99%
Benzene, 1methoxy4methyl
Methyl pmethylphenyl ether
4Methylphenol methyl ether
Methyl 4methylphenyl ether
1-methyoxy-4-methylbenzene
SCHEMBL12464
WLN: 1OR D1
SCHEMBL2489775
SCHEMBL12015216
FEMA 2681
NSC6254
LRB43136
4-Methylanisole, analytical standard
Tox21_201081
BDBM50008555
STL268886
AKOS000121016
4-Methylanisole, >=99%, FCC, FG
CS-W013551
HY-W012835
NCGC00248917-01
NCGC00258634-01
BS-23266
CAS-104-93-8
PD164982
M0149
NS00010202
EN300-16112
Q15726084
Z53834227
F0001-0094
Solubility of 1-methoxy-4-methyl-benzene
1-methoxy-4-methyl-benzene, commonly known as p-anisole, exhibits notable solubility characteristics that are of interest in various chemical applications. The molecule's structure consists of a benzene ring substituted with both a methoxy group (-OCH3) and a methyl group (-CH3), influencing its interaction with solvents.
Key points regarding the solubility of 1-methoxy-4-methyl-benzene include:
In summary, while 1-methoxy-4-methyl-benzene is predominantly soluble in non-polar and moderately polar organic solvents, its solubility in water remains minimal. This characteristic can be crucial when considering p-anisole's application in synthesis and extraction processes, where solvent selection is vital for optimal performance.