Interesting facts
Interesting Facts about 5-methylphenazin-5-ium methyl sulfate
5-methylphenazin-5-ium methyl sulfate is a compound that showcases the fascinating intersection of organic chemistry and medicinal applications. Here are some intriguing aspects to consider:
- Structure and Stability: This compound features a unique phenazine core, which is a bicyclic structure. This core contributes to its stability and potential reactivity, making it an interesting target for synthetic chemists.
- Biological Activity: Phenazine derivatives are known for their biological activities. Some studies have suggested that compounds like 5-methylphenazin-5-ium methyl sulfate may possess antimicrobial properties, posing potential applications in pharmaceuticals.
- Suitable Reagent: In synthetic organic chemistry, methyl sulfate is often utilized as a methylating agent. This characteristic allows for the introduction of methyl groups into various substrates, enabling the creation of more complex molecules.
- Environmental Considerations: As with many chemical compounds, understanding the environmental impact of compounds like 5-methylphenazin-5-ium methyl sulfate is crucial. The potential for bioaccumulation or toxicity emphasizes the need for responsible usage and disposal.
- Research Opportunities: With ongoing research in fields such as medicinal chemistry, materials science, and environmental chemistry, 5-methylphenazin-5-ium methyl sulfate presents various avenues for exploration. From its synthesis to its applications, there is much to learn about this compound.
In summary, 5-methylphenazin-5-ium methyl sulfate is not only a compound of interest due to its structural features but also a versatile entity with applications across multiple domains in science. As scientists continue to delve into its characteristics and behaviors, the potential for novel discoveries remains vast.
Synonyms
Phenazine methosulfate
299-11-6
5-methylphenazin-5-ium methyl sulfate
5-Methylphenazinium methyl sulfate
N-Methylphenazonium methosulfate
Phenazine methosulphate
Methylphenazonium methosulfate
5-Methylphenazine methylsulfate
N-Methylphenazinium methosulfate
N-Methylphenazonium methosulphate
phenazine methylsulfate
PMS (pharmaceutical)
Phenazinium, 5-methyl-, methyl sulfate
N-Methylphenazinium methyl sulfate
5-Methyl phenazine, methyl sulfate salt
5-N-Methylphenazonium methosulfate
5-Methylphenazinium methyl sulphate
CCRIS 5618
EINECS 206-072-1
NSC 34661
J3GYQ3401Y
AI3-61076
N-Methylphenazonium methyl sulfate
Phenazine (methylsulfate)
NSC-34661
5-methylphenazin-5-ium;methyl sulfate
5-Methylphenazinium methyl sulfate (1:1)
CHEBI:8055
DTXSID1059783
MFCD00011923
Phenazine Methyl Sulfate
N-METHYLPHENAZONIUM METHOSULFATE [MI]
Phenazinium, 5-methyl-, methyl sulfate (1:1)
PMS (VAN)
Methosulfate, Phenazine
UNII-J3GYQ3401Y
Methosulfate, Methylphenazonium
5 Methylphenazinium Methyl Sulfate
Methyl Sulfate, 5-Methylphenazinium
phenazin methosulfate
Sulfate, 5-Methylphenazinium Methyl
Phenazinium, methyl sulfate
SCHEMBL94397
5Methylphenazine methylsulfate
NMethylphenazinium methosulfate
NMethylphenazonium methosulphate
5NMethylphenazonium methosulfate
DTXCID5038096
NMethylphenazinium methyl sulfate
5-methyl phenazinium methosulfate
5Methylphenazinium methyl sulfate
5Methylphenazinium methyl sulphate
N-methylphenazine methylsulfate salt
NSC34661
Phenazinium, 5methyl, methyl sulfate
AKOS005146546
Phenazine methosulfate, >=90% (UV)
5Methyl phenazine, methyl sulfate salt
CCG-267536
CS-W004520
DS-8261
FM29281
HY-W004520
DA-56789
NS00041692
P0083
P1872
C00200
D82042
A820104
Q27107674
N-Methylphenazonium methosulfate;5-Methylphenazinium methyl sulfate
Solubility of 5-Methylphenazin-5-ium Methyl Sulfate
The solubility of 5-methylphenazin-5-ium methyl sulfate can be described as complex, owing to its ionic nature and structural properties. This compound is a quaternary ammonium salt, which generally contributes to its distinct solubility characteristics. Here are some key points to consider:
In summary, the solubility of 5-methylphenazin-5-ium methyl sulfate predominantly showcases its compatibility with polar solvents, particularly water, benefiting from its ionic characteristics. Understanding these solubility dynamics is crucial for its effective application in various fields.