Molecule:100970: Difference between revisions
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molecule
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M V30 END CTAB | M V30 END CTAB | ||
M END | M END | ||
|smiles=NC1C=C2[N+](=C3C(=CC2=CC=1)C=CC(N)=C3)C | |smiles=NC1C=C2[N+](=C3C(=CC2=CC=1)C=CC(N)=C3)C | ||
|inchi=1S/C14H13N3/c1-17-13-7-11(15)4-2-9(13)6-10-3-5-12(16)8-14(10)17/h2-8H,1H3,(H3,15,16)/p+1 | |inchi=1S/C14H13N3/c1-17-13-7-11(15)4-2-9(13)6-10-3-5-12(16)8-14(10)17/h2-8H,1H3,(H3,15,16)/p+1 |
Latest revision as of 11:43, 17 November 2024
Properties | |
---|---|
CID | 2016 |
CAS | 837-73-0 |
IUPAC-Name | 10-methylacridin-10-ium-3,6-diamine |
Abbreviation | n/a |
Trivialname | 3,6-Diamino-10-methylacridinium |
Exact mass | 224.118772459 |
Molecular formula | C14H14N3+ |
LogP | n/a |
Has vendors | true |
Molecular role | n/a |
Synonyms | 3,6-Diamino-10-methylacridinium, acriflavinium, 10-methylacridin-10-ium-3,6-diamine, 3,6-Diamino-10-methylacridine, Acriflavon, Xanthacridine, Flavine, Panflavin, ACRIDINIUM, 3,6-DIAMINO-10-METHYL-, CHEBI:60585 |
3,6-Diamino-10-methylacridinium
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Molecule is used on following pages
topic
publication
investigation
- Exchange Coupling Determines Metal-Dependent Efficiency for Iron- and Cobalt-Catalyzed Photochemical CO2 Reduction/Iron-Catalyzed Photochemical CO2 Reduction under diverse conditions
- Exchange Coupling Determines Metal-Dependent Efficiency for Iron- and Cobalt-Catalyzed Photochemical CO2 Reduction/CO2 Reduction under diverse conditions with diverse sensitizers
- Exchange Coupling Determines Metal-Dependent Efficiency for Iron- and Cobalt-Catalyzed Photochemical CO2 Reduction/Iron-Catalyzed Photochemical CO2 Reduction under diverse conditions error