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Atomfair Tetrafluorophthalonitrile C8F4N2
Description Tetrafluorophthalonitrile (CAS No. 1835-65-0) is a high-purity fluorinated aromatic compound with the molecular formula C8F4N2and IUPAC name 3,4,5,6-tetrafluorobenzene-1,2-dicarbonitrile . This specialty chemical features a benzene core substituted with four fluorine atoms and two nitrile groups, offering exceptional thermal stability, chemical resistance, and reactivity for advanced synthetic applications. Its electron-deficient structure makes it a valuable precursor for high-performance polymers, liquid crystals, and coordination chemistry. Available in crystalline form with ??98% purity (GC), it is rigorously tested for consistency and suitability in sensitive research and industrial processes. Proper handling under inert conditions is recommended due to its reactivity.
Description
Description
Tetrafluorophthalonitrile (CAS No. 1835-65-0) is a high-purity fluorinated aromatic compound with the molecular formula C8F4N2 and IUPAC name 3,4,5,6-tetrafluorobenzene-1,2-dicarbonitrile. This specialty chemical features a benzene core substituted with four fluorine atoms and two nitrile groups, offering exceptional thermal stability, chemical resistance, and reactivity for advanced synthetic applications. Its electron-deficient structure makes it a valuable precursor for high-performance polymers, liquid crystals, and coordination chemistry. Available in crystalline form with ??98% purity (GC), it is rigorously tested for consistency and suitability in sensitive research and industrial processes. Proper handling under inert conditions is recommended due to its reactivity.
- CAS No: 1835-65-0
- Molecular Formula: C8F4N2
- Molecular Weight: 200.09
- Exact Mass: 199.99976066
- Monoisotopic Mass: 199.99976066
- IUPAC Name: 3,4,5,6-tetrafluorobenzene-1,2-dicarbonitrile
- SMILES: C(#N)C1=C(C(=C(C(=C1F)F)F)F)C#N
- Synonyms: Tetrafluorophthalonitrile, 1835-65-0, 3,4,5,6-Tetrafluorobenzene-1,2-dicarbonitrile, EINECS 217-400-8, DTXSID6075142
Application
Tetrafluorophthalonitrile serves as a key monomer in the synthesis of fluorinated phthalocyanines for dyes, pigments, and organic semiconductors. It is used in the development of high-temperature polymers and liquid crystal displays (LCDs) due to its thermal stability. Researchers also employ it as a building block for metal-organic frameworks (MOFs) and catalysts in cross-coupling reactions.
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