Introduction of CAS:36432-31-2|1,2,3-TRIMETHYLIMIDAZOLIUM IODIDE
Dye-Sensitized Solar Cells 1,2,3-Trimethylimidazolium iodide finds significant application in the field of dye-sensitized solar cells (DSSCs). Research has shown that derivatives of this compound, when mixed with iodine, can be used as gel electrolytes in DSSCs. These compounds contribute to the efficiency of these solar cells by increasing the specific conductivity of the gel electrolyte, which has been shown to improve with the addition of iodine and with temperature changes. Such applications demonstrate the potential of 1,2,3-Trimethylimidazolium iodide in renewable energy technologies.
Specification of CAS:36432-31-2|1,2,3-TRIMETHYLIMIDAZOLIUM IODIDE
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36432-31-2 |
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C6H11IN2 |
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238.06941 |
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98% |
Research Application of CAS:36432-31-2|1,2,3-TRIMETHYLIMIDAZOLIUM IODIDE
The compound also plays a role in the study of crystal structures and chemical reactions. Investigations into the structure and reactions of similar compounds, like Tetramethylimidazole, which shares a structural similarity with 1,2,3-Trimethylimidazolium iodide, provide insights into the ionic nature of these compounds in solid states. Such research is crucial in understanding the fundamental properties of these chemicals (Kuhn et al., 1991).
Derivatives of 1,2,3-Trimethylimidazolium iodide are noted for their photosensitive properties, making them interesting for studies based on electronic absorption spectroscopy. They are used in the creation of hemicyanine dyes, which are significant in the field of optical materials and sensors (Corina & Eugenia, 2005).
The compound is instrumental in the creation of ionic liquid polymer gels used as quasi-solid-state electrolytes in various applications, particularly in DSSCs. Research shows that these gels, containing derivatives of 1,2,3-Trimethylimidazolium iodide, offer improved conversion efficiency in solar cells (Wang et al., 2002).
Studies on 1,2,3-Trimethylimidazolium iodide and its analogs also extend to electrochemical applications. For instance, its utility in the synthesis of new compounds for electrochemical analysis and its role in the formation of iodide complexes for the determination of heavy metals like lead and cadmium have been explored (Kamio & Nagaosa, 2008).
In the field of materials science, 1,2,3-Trimethylimidazolium iodide derivatives are investigated for their potential as corrosion inhibitors. They have shown effectiveness in protecting metals like mild steel in acidic solutions, thus having implications for industrial applications (Zheng et al., 2014).



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