DescriptionThis dihydrophenazine-based organic photoredox catalyst (in addition to the dihydrophenazine catalyst901111) was designed to be a strong excited-state reductant and possesses advanced photophysical and electrochemical properties, enabling it to serve as a sustainable replacement for ruthenium- or iridium-based photoredox catalysts. For example, dihydrophenazine and phenoxazine derivatives were demonstrated to replace ruthenium or iridium complexes in the application of photoredox-catalyzed atom transfer radical polymerization (ATRP) for controlled polymer synthesis and small molecule transformations such as trifluoromethylation, atom transfer radical addition, and dual Nickel/photoredox catalyzed C-N and C-S cross-couplings. Dihydrophenazine- and phenoxazine-based organic photoredox catalysts were introduced in collaboration with theMiyakeResearch Group.
Specifications and Purity: New Iridium, ≥97%
Molecular Formula: C32H22N2
Molecular Weight: 434.53
PubChem CID: 20767396
Isomeric SMILES: C1=CC=C2C=C(C=CC2=C1)N3C4=CC=CC=C4N(C5=CC=CC=C53)C6=CC7=CC=CC=C7C=C6
Related Documents: https://ald-pub-files.oss-cn-shanghai.aliyuncs.com/aladdinsci/pdp/sds/1/P485532-SCI_839819d40d7d21a6939d76a7c34de11d.pdf
- UPC:
- 41106616
- Condition:
- New
- HazmatClass:
- No
- WeightUOM:
- LB
- MPN:
- P485532-100mg
- CAS:
- 1934269-97-2
- Product Size:
- 100mg
- Hazard Statement Codes:
- H302
- Precautionary Statement Codes:
- P301+P312+P330
akash.verma@cenmed.com
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