Catalog Number |
ACM247902483 |
CAS |
247902-48-3 |
Structure |
![{[CurrentData.Name]}](https://resource.alfa-chemistry.com/structure/247902-48-3.gif) |
Description |
3,3'-Methylenebis(1-tert-butyl-3-imidazolium bromide) is an organic compound with a wide range of applications in the chemical and pharmaceutical industries. It is a strong ionic liquid, which has been used as a solvent and catalyst in various industrial processes. It has been studied extensively for its unique properties and its potential applications in various fields. |
Synonyms |
1H-Imidazolium, 1,1'-methylenebis[3-(1,1-dimethylethyl)-, dibromide |
IUPAC Name |
1-tert-butyl-3-[(3-tert-butylimidazol-1-ium-1-yl)methyl]imidazol-3-ium;dibromide |
Molecular Weight |
422.209 g/mol |
Molecular Formula |
C15H26Br2N4 |
Canonical SMILES |
CC(C)(C)N1C=C[N+](=C1)C[N+]2=CN(C=C2)C(C)(C)C.[Br-].[Br-] |
InChI |
InChI=1S/C15H26N4.2BrH/c1-14(2,3)18-9-7-16(12-18)11-17-8-10-19(13-17)15(4,5)6;;/h7-10,12-13H,11H2,1-6H3;2*1H/q+2;;/p-2 |
InChI Key |
QITKMIZFIHLBDT-UHFFFAOYSA-N |
Melting Point |
>300 °C |
Purity |
98% |
Solubility |
not available |
Appearance |
Solid |
Application |
3,3'-Methylenebis(1-tert-butyl-3-imidazolium bromide) has been used in a variety of scientific research applications. It has been used as a catalyst in the synthesis of various organic compounds, as a solvent in the synthesis of polymers and other materials, and as a reagent in the synthesis of various pharmaceutical compounds. It has also been used as an electrode in the study of electrochemical processes. In addition, it has been used in the study of the structure and properties of various materials, as well as in the study of the interaction between molecules. |
Storage |
Argon filling |
Complexity |
272 |
Covalently-Bonded Unit Count |
3 |
Exact Mass |
422.05g/mol |
Heavy Atom Count |
21 |
Isomeric SMILES |
CC(C)(C)N1C=C[N+](=C1)C[N+]2=CN(C=C2)C(C)(C)C.[Br-].[Br-] |
Monoisotopic Mass |
420.052g/mol |
Properties |
3,3'-Methylenebis(1-tert-butyl-3-imidazolium bromide) has been studied for its potential effects on biochemical and physiological processes. Studies have shown that it has an inhibitory effect on the enzyme cyclooxygenase-2, which is involved in inflammation. It has also been shown to have an inhibitory effect on the enzyme phosphodiesterase, which is involved in the breakdown of cAMP. In addition, it has been shown to have an inhibitory effect on the enzyme acetylcholinesterase, which is involved in the breakdown of acetylcholine. |
Rotatable Bond Count |
4 |
Topological Polar Surface Area |
17.6A^2 |