Ring-transformation equilibrium with participation of π-bonded S in an isothiazole system. Synthesis of non-ring-transformed 5-(2-aminovinyl)isothiazole derivative via 1,3-silyl group shift
Author:
Publisher
Elsevier BV
Subject
Organic Chemistry,Drug Discovery,Biochemistry
Reference8 articles.
1. Chemistry of hypervalent sulfur. 9. Bond switch with participation of .pi.-bonded SIV in a thiadiazole ring system
2. Rates of reversible bond switch with participation of .pi.-bonded sulfur(IV) in a protonated thiadiazole ring system
3. RING-TRANSFORMATION FROM ISOTHIAZOLE TO 1,2,4-THIADIAZOLE - POSSIBLE INTERMEDIACY OF π-SULFURANE
4. Fluxional pentacarbonyltungsten(0) complexes of the thioaldehyde and thioketone valence isomers of 1,6,6aλ4-trithiapentalenes
5. K. Akiba, K. Kashiwagi, Y. Ohyama, K. Ohkata; to be submitted for publication as a full paper.
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1. Regio- and Stereoselective Hydroamination of Alkynes Using an Ammonia Surrogate: Synthesis of N-Silylenamines as Reactive Synthons;Journal of the American Chemical Society;2018-03-12
2. Direct Catalytic Access to N-Silylated Enamines from Enolizable Imines and Hydrosilanes by Base-Free Dehydrogenative SiN Coupling;Chemistry - A European Journal;2014-05-27
3. Studies on hypervalent compounds and synthetic work using heteroaromatic cations;Heteroatom Chemistry;2011
4. Theoretical Study of Hypervalent Bonds in 1,6-Diaza-1,6-dihydro- and 1,6-Dihydro-1,6-dioxapentalene Systems with a Heteroatom X at 6a Position (X = 14–16 Group Atoms);Bulletin of the Chemical Society of Japan;2010-08-15
5. Theoretical Study of Bond-Switching in 1,6-Dihydro-6a-thia-1,6-diazapentalene (10-S-3) Systems Compared with Corresponding Oxygen Analogues;Bulletin of the Chemical Society of Japan;2010-05-15
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