Interesting facts
Interesting Facts about 1-chloro-2-methylsulfanyl-ethane
1-chloro-2-methylsulfanyl-ethane is a fascinating compound known for its unique chemical structure and diverse applications. Here are some noteworthy aspects:
- Structural Insights: This compound features a chloro group and a methyl sulfanyl group, which introduces interesting reactivity patterns. The presence of both a chlorine atom and a sulfanyl group can lead to intriguing substitution reactions.
- Applications in Organic Synthesis: The compound is often utilized as an intermediate in various organic synthesis pathways. Its reactive functional groups make it valuable in preparing more complex molecules.
- Flavor and Fragrance: Compounds similar to 1-chloro-2-methylsulfanyl-ethane often find applications in the flavor and fragrance industry. The sulfanyl group can contribute to the characteristic smells and tastes of certain substances.
- Environmental Considerations: Understanding the behavior of such halogenated compounds is crucial for environmental chemistry. Investigating their stability and degradation pathways helps assess their impact on ecosystems.
- Laboratory Safety: As with many chlorinated compounds, handling 1-chloro-2-methylsulfanyl-ethane requires proper safety precautions due to its potential toxicity and reactivity.
In summary, 1-chloro-2-methylsulfanyl-ethane serves as a compelling example of how simple structural components can lead to complex chemical behavior and broad applicability in various fields. It highlights the importance of studying such compounds to unlock their potential uses while appreciating their role in both synthetic and environmental chemistry.
Synonyms
2-Chloroethyl methyl sulfide
542-81-4
1-CHLORO-2-(METHYLTHIO)ETHANE
Ethane, 1-chloro-2-(methylthio)-
2-Methylthioethyl chloride
2-Chloroethyl methyl sulphide
Sulfide, 2-chloroethyl methyl
NSC 91724
4-chloro-2-thiabutane
EINECS 208-828-6
NSC-91724
422D246XB5
DTXSID50202557
METHYL .BETA.-CHLOROETHYL SULFIDE
2Methylthioethyl chloride
1Chloro2(methylthio)ethane
2Chloroethyl methyl sulphide
Sulfide, 2chloroethyl methyl
Ethane, 1chloro2(methylthio)
DTXCID80125048
Sulfide, 2chloroethyl methyl (8CI)
Ethane, 1chloro2(methylthio) (9CI)
METHYL BETA-CHLOROETHYL SULFIDE
Sulfide, 2-chloroethyl methyl (8CI)
Ethane, 1-chloro-2-(methylthio)-(9CI)
(2-Chloroethyl)(methyl)sulfane
1-chloro-2-methylsulfanylethane
2-chloroethyl methylsulfide
1-Chloro-2-(methylsulfanyl)ethane
22599-69-5
1-chloro-2-methylsulfanyl-ethane
2-(Methylthio)ethyl chloride
.beta.-Chloroethyl methyl sulfide
A-chloroethylmethyl sulfide
C3H7ClS
2-chloroethylmethylsulfide
MFCD00000978
methylthioethylchloride
methylthioethyl chloride
chloroethyl methylsulfide
CH3SCH2CH2Cl
2-methylthioethylchloride
2-chloroethylmethylsulfane
chloroethyl methyl sulfide
2-chlorethyl-methylsulfide
2-chloroethylmethylsulphide
2-chloroethyl-methylsulfide
1-chloro-2-methylthioethane
A-chloroethyl methyl sulfide
2-chloroethyl-methyl sulphide
(2-chloroethyl)methyl sulfide
2-chloro-ethyl methyl sulfide
SCHEMBL223485
beta-Chloroethyl methyl sulfide
UNII-422D246XB5
1-chloro-2-methylmercapto-ethane
1-chloranyl-2-methylsulfanyl-ethane
ALBB-014067
NSC91724
2-Chloroethyl methyl sulfide, 97%
1-Chloro-2-(methylsulfanyl)ethane #
AKOS005174447
FC29696
FS-4217
DB-111250
NS00033023
EN300-12529
A830079
InChI=1/C3H7ClS/c1-5-3-2-4/h2-3H2,1H
2-Chloroethyl methyl sulfide, purum, >=97.0% (GC)
Solubility of 1-chloro-2-methylsulfanyl-ethane
1-chloro-2-methylsulfanyl-ethane, with the chemical formula C3H9ClS, exhibits noteworthy solubility characteristics that are influenced by both its molecular structure and the presence of functional groups. Understanding the solubility of this compound can be summarized as follows:
In summary, 1-chloro-2-methylsulfanyl-ethane displays a complex interaction of polar and non-polar characteristics, impacting its solubility. While it may exhibit limited solubility in water, it shows better solubility in organic solvents, making it an interesting compound for various applications. As stated, "Solubility is a key property influencing the behavior of chemical compounds in different environments." This highlights the importance of solvent choice in practical applications involving this compound.