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Atomfair trans-2-Fluoro-4-(4-vinyl-cyclohexyl)-benzonitrile C15H16FN
Description trans-2-Fluoro-4-(4-vinyl-cyclohexyl)-benzonitrile (CAS No. 157453-50-4) is a high-purity fluorinated benzonitrile derivative with the molecular formula C15H16FN . This compound features a trans-configuration vinylcyclohexyl group attached to a fluorinated benzonitrile core, making it a valuable intermediate in organic synthesis and materials science. Its unique structure offers excellent reactivity for cross-coupling reactions, polymerization, and liquid crystal applications. The product is supplied as a crystalline solid with ??95% purity (HPLC), ensuring consistency for research and industrial use. Ideal for advanced chemical synthesis, this compound is rigorously tested for quality, stability, and performance.
Description
Description
trans-2-Fluoro-4-(4-vinyl-cyclohexyl)-benzonitrile (CAS No. 157453-50-4) is a high-purity fluorinated benzonitrile derivative with the molecular formula C15H16FN. This compound features a trans-configuration vinylcyclohexyl group attached to a fluorinated benzonitrile core, making it a valuable intermediate in organic synthesis and materials science. Its unique structure offers excellent reactivity for cross-coupling reactions, polymerization, and liquid crystal applications. The product is supplied as a crystalline solid with ??95% purity (HPLC), ensuring consistency for research and industrial use. Ideal for advanced chemical synthesis, this compound is rigorously tested for quality, stability, and performance.
- CAS No: 157453-50-4
- Molecular Formula: C15H16FN
- Molecular Weight: 229.29
- Exact Mass: 229.126677677
- Monoisotopic Mass: 229.126677677
- IUPAC Name: 4-(4-ethenylcyclohexyl)-2-fluorobenzonitrile
- SMILES: C=CC1CCC(CC1)C2=CC(=C(C=C2)C#N)F
- Synonyms: 157453-50-4, TRANS-2-FLUORO-4-(4-VINYL-CYCLOHEXYL)-BENZONITRILE, 4-(4-ethenylcyclohexyl)-2-fluorobenzonitrile, Benzonitrile, 4-(trans-4-ethenylcyclohexyl)-2-fluoro-, SCHEMBL9964623
Application
trans-2-Fluoro-4-(4-vinyl-cyclohexyl)-benzonitrile is widely used as a key monomer in the synthesis of advanced liquid crystal materials for display technologies. Its fluorinated aromatic core enhances thermal stability and optical properties in polymer matrices. Researchers also employ it in organic electronics, such as OLEDs, due to its electron-withdrawing nitrile group and vinyl functionality for polymerization. Additionally, it serves as a versatile building block in pharmaceutical intermediates and agrochemicals.
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