Introduction of CAS:2301-80-6 | 1 4-DIMETHYLPYRIDINIUM IODIDE 99
1,4-Dimethylpyridinium iodide is a chemical compound that has gained significant attention in the scientific community due to its unique properties and potential applications. It is a salt that is formed by the reaction of pyridine with methyl iodide. This compound has been extensively studied for its applications in organic synthesis, electrochemistry, and as a catalyst.
Specification of CAS:2301-80-6 | 1 4-DIMETHYLPYRIDINIUM IODIDE 99
|
ITEMS |
SPECIFICATION |
|
CAS |
2301-80-6 |
|
Melt point |
151-154°C (lit.) |
|
Molecular Formula |
C7H10IN |
|
Purity |
97% |
Research Application of CAS:2301-80-6 | 1 4-DIMETHYLPYRIDINIUM IODIDE 99
Transformation Under the Influence of Sulfites of Cyclic Amines
1,4-Dimethylpyridinium iodide has been studied for its chemical transformations under the influence of sulfites of cyclic amines such as morpholine, piperidine, and piperazine. These transformations include demethylation and recyclization, indicating its reactive nature and potential applications in synthetic chemistry (Kost et al., 1980).
Liquid Chromatography-Mass Spectrometry Analysis
This compound has been the focus of analytical methods development, particularly in liquid chromatography-mass spectrometry for its determination in biological samples like rat plasma. This emphasizes its importance in pharmacokinetic studies and its potential role in medical research (Szafarz et al., 2013).
Investigation of Spectral Properties
Research has been conducted on the spectral properties of substituted styrylpyridinium salts, which include 1,4-dimethylpyridinium iodide. These studies are crucial for understanding the material's potential applications in optics and biological studies, as they explore the interaction of these compounds with light (Gawinecki & Trzebiatowska, 2000).
Magneto-Structural Correlation Studies
1,4-Dimethylpyridinium iodide has also been studied in the context of magneto-structural correlation. Research in this area explores the relationship between the structural arrangement of this compound and its magnetic properties, which is significant for applications in materials science and magnetic resonance (Awaga et al., 1994).
Application in Corrosion Inhibition
Another fascinating application of derivatives of this compound is in the field of corrosion inhibition. Research has shown that compounds like 1,4-dimethylpyridinium iodide can act as effective corrosion inhibitors for certain types of steel in acidic solutions, highlighting its potential in industrial applications (Obaid et al., 2017).
Utilization in Nonlinear Optical Materials
The compound has been investigated for its nonlinear optical absorption properties. This is crucial for the development of optical materials with specific, controllable light absorption characteristics, which have applications in laser technology and optical computing (Xu et al., 2008).


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