Interesting facts
Interesting Facts about Trimethyl-(1-Methyl-2-Phenothiazin-10-yl-Ethyl)ammonium Methyl Sulfate
Trimethyl-(1-methyl-2-phenothiazin-10-yl-ethyl)ammonium methyl sulfate is a fascinating compound within the field of organic chemistry. Here are some intriguing aspects:
- Quaternary Ammonium Salt: This compound is classified as a quaternary ammonium salt, which plays a significant role in biological systems and industrial applications, such as surfactants and disinfectants.
- Biological Relevance: Compounds like this one, which contain phenothiazine moieties, have been studied for their potential pharmacological effects. Phenothiazines are known to exhibit antipsychotic and antihistaminic properties, making them of interest in medicinal chemistry.
- Stability and Reactivity: Methyl sulfate acts as a methylating agent, which is vital for many organic synthesis reactions. This compound can easily undergo nucleophilic substitution reactions due to the presence of the sulfonate group.
- Applications in Research: This compound is useful in various research fields, including biochemistry and medicinal chemistry. It can serve as a model compound for studying ion transport across membranes and investigating cell signaling pathways.
- Versatile Structure: The bulky phenothiazine group impacts the compound's physical and chemical properties significantly, often leading to unique interactions with biological membranes.
Having mentioned these highlights, it is essential to recognize the ongoing research and development surrounding this intriguing compound, as scientists continue to explore its full potential and implications. As chemists delve deeper into its properties, this archtypical methyl sulfate may illuminate new pathways in drug design and development.
Synonyms
Thiazinamium metilsulfate
Multergan
Multezin
Padisal
Thiazinamium methylsulfate
Valan
Thiazinamium methyl sulfate
58-34-4
Prothazin methosulfate
Metilsulfato de tiazinamio
Thiazinamium metilsulfate [INN]
Metilsulfate de thiazinamium
Thiazinamii metilsulfas
Thiazinamium metilsulphate
Methylpromethazinium methylsulfuricum
EINECS 200-376-8
Thiazinamii metilsulfas [INN-Latin]
UNII-IA16WBX317
RP 3554
IA16WBX317
Metilsulfato de tiazinamio [INN-Spanish]
Metilsulfate de thiazinamium [INN-French]
Trimethyl(1-methyl-2-phenothiazin-10-ylethyl)ammonium methyl sulfate
3354 R.P.
methyl sulfate;trimethyl(1-phenothiazin-10-ylpropan-2-yl)azanium
N-(beta-(10-Phenothiazinyl)propyl)trimethylammonium methyl sulfate
Trimethyl (1-methyl-2-phenothiazin-10-ylethyl)ammonium methyl sulfate
Trimethyl(1-methyl-2-(10-phenothiazinyl)ethyl)ammonium methyl sulfate
Ammonium, trimethyl(1-methyl-2-phenothiazin-10-ylethyl)-, methyl sulfate
N,N,N,alpha-Tetramethyl-10H-phenothiazine-10-ethanaminium methyl sulfate
THIAZINAMIUM METHYLSULFATE [MI]
THIAZINAMIUM METILSULFATE [MART.]
THIAZINAMIUM METILSULFATE [WHO-DD]
10H-Phenothiazine-10-ethanaminium, N,N,N,alpha-tetramethyl-, methyl sulfate
Thiazinamii metilsulfas (INN-Latin)
TRIMETHYL(1-METHYL-2-PHENOTHIAZIN-10-YLETHYL)AMMONIUM METHYL SULPHATE
THIAZINAMIUM METILSULFATE (MART.)
Metilsulfato de tiazinamio (INN-Spanish)
Metilsulfate de thiazinamium (INN-French)
thiazinamium (cation)
Thiazinamiummetilsulfat
SCHEMBL29040
CHEMBL2146061
DTXSID20871532
R06AD06
NS00078956
Q27280630
Trimethyl-[1-methyl-2-(10-phenothiazinyl)ethyl]ammonium methyl sulphate
trimethyl[1-methyl-2-(phenothiazine-10-yl)ethyl]ammonium methyl sulfate
200-376-8
Solubility of Methyl Sulfate; Trimethyl-(1-methyl-2-phenothiazin-10-yl-ethyl)ammonium (C19H24N2O4S2)
The solubility of **methyl sulfate; trimethyl-(1-methyl-2-phenothiazin-10-yl-ethyl)ammonium** is a critical aspect to consider for its practical applications, especially in pharmaceuticals and chemical processes. Known for its cationic nature due to the presence of ammonium groups, this compound typically exhibits distinct solubility characteristics.
Moreover, its solubility can be influenced by factors such as:
In summary, the solubility of this compound is primarily determined by its ionic nature and the environmental conditions. Understanding these factors is essential for optimizing its use in various applications.