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Atomfair Difluorodiphenylsilane C12H10F2Si
Description Difluorodiphenylsilane (CAS No. 312-40-3) is a high-purity organosilicon compound with the molecular formula C12H10F2Si . This versatile reagent features a silicon center bonded to two fluorine atoms and two phenyl groups, making it a valuable building block in organometallic and polymer chemistry. Our product is synthesized under stringent quality control to ensure exceptional consistency, with typical purity levels exceeding 98% (GC). Suitable for use in inert atmosphere applications, it is packaged in amber glass bottles under nitrogen to prevent degradation. Ideal for researchers developing silicon-based materials , fluorinated polymers , or surface modification agents . Technical specifications include: molecular…
Description
Description
Difluorodiphenylsilane (CAS No. 312-40-3) is a high-purity organosilicon compound with the molecular formula C12H10F2Si. This versatile reagent features a silicon center bonded to two fluorine atoms and two phenyl groups, making it a valuable building block in organometallic and polymer chemistry. Our product is synthesized under stringent quality control to ensure exceptional consistency, with typical purity levels exceeding 98% (GC). Suitable for use in inert atmosphere applications, it is packaged in amber glass bottles under nitrogen to prevent degradation. Ideal for researchers developing silicon-based materials, fluorinated polymers, or surface modification agents. Technical specifications include: molecular weight of 220.29 g/mol, boiling point of ~210??C, and density of 1.14 g/cm3. Handle with appropriate precautions as it reacts vigorously with moisture.
- CAS No: 312-40-3
- Molecular Formula: C12H10F2Si
- Molecular Weight: 220.29
- Exact Mass: 220.05198318
- Monoisotopic Mass: 220.05198318
- IUPAC Name: difluoro(diphenyl)silane
- SMILES: C1=CC=C(C=C1)[Si](C2=CC=CC=C2)(F)F
- Synonyms: Difluorodiphenylsilane, Diphenyldifluorosilane, 312-40-3, Silane, difluorodiphenyl-, Benzene, 1,1′-(difluorosilylene)bis-
Application
Difluorodiphenylsilane serves as a key precursor in the synthesis of fluorinated siloxane polymers with enhanced thermal stability. Researchers utilize this compound to create hydrophobic coatings for electronic components and optical devices. The material finds application in semiconductor manufacturing as a dielectric layer precursor and in catalysis as a ligand modifier for transition metal complexes.
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