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Title: | Catalytic Acceptorless Dehydrogenation of Amino Alcohols and 2-Hydroxybenzyl Alcohols for Annulation Reaction under Neutral Conditions |
Authors: | PANDEY, AKANKSHA M. DIGRAWAL, NAVEEN KUMAR MOHANTA, NIRMALA JAMDADE, AKASH BANDU CHAUDHARI, MORESHWAR B. BISHT, GIRISH SINGH GNANAPRAKASAM, BOOPATHY Dept. of Chemistry |
Keywords: | Chemistry 2021-JUL-WEEK1 TOC-JUL-2021 2021 |
Issue Date: | Jul-2021 |
Publisher: | American Chemical Society |
Citation: | Journal of Organic Chemistry, 86(13), 8805–8828. |
Abstract: | A base-free and acceptorless Ru-catalyzed dehydrogenative approach has been developed for the synthesis of N-heterocycles by using 1,3-dicarbonyls and amino alcohols through a domino sequential enamine formation and intramolecular oxidative cyclization strategy. This unified approach is also applicable for the synthesis of O-heterocycles involving 2-hydroxybenzyl alcohol as a coupling reactant via consecutive C-alkylation and intramolecular cyclization steps. The present protocol is general for the synthesis of varieties of biologically important scaffolds, such as tetrahydro-4H-indol-4-one, 3,4-dihydroacridin-1(2H)-one, and tetrahydro-1H-xanthen-1-ones derivatives using a single catalytic system, viz. RuH2CO(PPh3)3. Environmentally benign H2O and H2 are the only byproducts in this domino process. Moreover, RuH2CO(PPh3)3-catalyzed C3-alkylation of tetrahydro-4H-indol-4-one using alcohol as a alkylating partner is also described in this report. For the first time, a solvent-free gram-scale reaction for the acceptorless dehydrogenative annulation has been demonstrated. A plausible mechanism for the Ru-catalyzed base-free and acceptorless dehydrogenative annulation of amino alcohols or 2-hydroxybenzyl alcohols has been provided with several experimental investigations and spectroscopic evidence. |
URI: | http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/6059 https://doi.org/10.1021/acs.joc.1c00714 |
ISSN: | 0022-3263 1520-6904 |
Appears in Collections: | JOURNAL ARTICLES |
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