An original approach to 5,6-dihydroindolizines from 1-allylpyrroles by a tandem hydroformylation/cyclization/dehydration sequence
Author:
Publisher
Elsevier BV
Subject
Organic Chemistry,Drug Discovery,Biochemistry
Reference16 articles.
1. Tandem Reaction Sequences under Hydroformylation Conditions: New Synthetic Applications of Transition Metal Catalysis
2. Chemoselectivity in the rhodium-catalyzed hydroformylation of 4-vinylpyridine: crucial role of phosphine ligand in promoting carbonylation instead of hydrogenation
3. High α-regioselectivity in the rhodium-catalyzed hydroformylation of vinylpyrroles
4. Rhodium-catalyzed hydroformylation of 1-allylpyrrole as an unexpected way to 5,6-dihydroindolizine synthesis
5. General and Efficient Approaches to Fused [1,2-a]Pyrroles and [1,2-a]Indoles
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1. Synthesis and Structures of 3-Ethyl 1,2-Dimethyl 5-Chloroindolizine-1,2,3-Tricarboxylate and 3-Ethyl 1,2-Dimethyl 5-Bromoindolizine-1,2,3-Tricarboxylate from 2-Chloro-1-(2-Ethoxy-2-Oxoethyl)Pyridin-1-Ium Bromide;Journal of Chemical Crystallography;2016-08-23
2. Synthesis of 3-Butadienyl-1-tosylpyrroles;Journal of Heterocyclic Chemistry;2014-05-29
3. One-Pot Synthesis of Polysubstituted Indolizines by an Addition/Cycloaromatization Sequence;The Journal of Organic Chemistry;2013-06-14
4. Hydroformylation in Natural Product Synthesis;Topics in Current Chemistry;2013
5. Rhodium-Catalyzed Hydroformylation in Fused Azapolycycles Synthesis;Topics in Current Chemistry;2013
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