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Atomfair cyclopenta-1,3-diene;1-(2,4-difluorophenyl)-3H-pyrrol-3-ide;titanium(4+) C30H22F4N2Ti
Description Cyclopenta-1,3-diene;1-(2,4-difluorophenyl)-3H-pyrrol-3-ide;titanium(4+) (CAS No. 125051-32-3) is a highly specialized organometallic compound with the molecular formula C30H22F4N2Ti . This titanium-based complex features a cyclopentadienyl ligand and a 1-(2,4-difluorophenyl)-3H-pyrrol-3-ide moiety, making it a valuable precursor for advanced catalytic and materials science applications. Its well-defined structure and high purity (>95%) ensure consistent performance in research and industrial processes. Ideal for use in polymerization catalysts, organic synthesis, and coordination chemistry, this compound is supplied as a stable solid under inert conditions to preserve its reactivity. Suitable for researchers and scientists working in organometallic chemistry, catalysis, and materials engineering.
Description
Description
Cyclopenta-1,3-diene;1-(2,4-difluorophenyl)-3H-pyrrol-3-ide;titanium(4+) (CAS No. 125051-32-3) is a highly specialized organometallic compound with the molecular formula C30H22F4N2Ti. This titanium-based complex features a cyclopentadienyl ligand and a 1-(2,4-difluorophenyl)-3H-pyrrol-3-ide moiety, making it a valuable precursor for advanced catalytic and materials science applications. Its well-defined structure and high purity (>95%) ensure consistent performance in research and industrial processes. Ideal for use in polymerization catalysts, organic synthesis, and coordination chemistry, this compound is supplied as a stable solid under inert conditions to preserve its reactivity. Suitable for researchers and scientists working in organometallic chemistry, catalysis, and materials engineering.
- CAS No: 125051-32-3
- Molecular Formula: C30H22F4N2Ti
- Molecular Weight: 534.4
- Exact Mass: 534.1198520
- Monoisotopic Mass: 534.1198520
- IUPAC Name: cyclopenta-1,3-diene;1-(2,4-difluorophenyl)-3H-pyrrol-3-ide;titanium(4+)
- SMILES: [CH-]1C=CC=C1.[CH-]1C=CC=C1.C1=CN(C=[C-]1)C2=C(C=C(C=C2)F)F.C1=CN(C=[C-]1)C2=C(C=C(C=C2)F)F.[Ti+4]
Application
This titanium(4+) complex is primarily used as a catalyst precursor in olefin polymerization and copolymerization reactions, enabling the synthesis of high-performance polyolefins. It also serves as a key intermediate in the development of novel organometallic frameworks and ligand systems for asymmetric catalysis. Researchers utilize this compound to explore C?CH activation and functionalization processes in organic synthesis.
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