Electrical Materials
Electronic materials are a critical component in the development and application of modern electronics. These materials include conductive polymers, semiconductors, superconductors, and organic electronic materials that play essential roles in various devices such as solar cells, transistors, sensors, and displays. They exhibit unique electrical properties, enabling them to either conduct or insulate electricity depending on their specific composition and structure. Conductive polymers are lightweight and flexible, making them ideal for use in bendable electronics and smart clothing. Semiconductors, particularly silicon-based materials, form the backbone of most electronic devices due to their ability to control electrical current. Superconductors operate at very low temperatures with zero electrical resistance, which makes them suitable for applications requiring high efficiency and precision, such as MRI machines and particle accelerators. Organic electronic materials are gaining popularity in flexible electronics due to their processability and compatibility with roll-to-roll manufacturing techniques.
These materials not only enhance the functionality of electronic devices but also contribute to reducing energy consumption and environmental impact through innovations like photovoltaic cells that convert sunlight into electricity more efficiently than traditional silicon-based solar panels.
| Structure | Chemical Name | CAS | MF |
|---|---|---|---|
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Silane,(chloromethyl)diethoxymethyl- | 2212-10-4 | C6H15ClO2Si |
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Dilithium Phthalocyanine | 25510-41-2 | C32H16Li2N8 |
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Benzyltriethoxysilane | 2549-99-7 | C13H22O3Si |
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TetraamylammoniumIodide | 2498-20-6 | C20H44IN |
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4,5-Bis(methylthio)-1,3-dithiole-2-thione | 49638-64-4 | C5H6S5 |
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4-Cyano-TEMPO | 38078-71-6 | C10H17N2O |
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Hexadecylphosphonic acid | 4721-17-9 | C16H35O3P |
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Aniline Hydroiodide | 45497-73-2 | C6H8IN |
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4-Phosphonobutyric acid | 4378-43-2 | C4H9O5P |
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1,6-Hexylenebisphosphonic Acid | 4721-22-6 | C6H16O6P2 |
Related Literature
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Huifang Yang,Haoran Guo,Peidong Fan,Xinpan Li,Wenlu Ren,Rui Song Nanoscale, 2020,12, 7024-7034
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Xixi Li,Nanwei Zhu,Ruohan Li,Qinpu Zhang Anal. Methods, 2020,12, 3376-3381
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Stephen P. Fletcher,Richard B. C. Jagt,Ben L. Feringa Chem. Commun., 2007, 2578-2580
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Xiaofeng Lin RSC Adv., 2016,6, 9002-9006
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