Synthesis of novel ferrocenyl N/O-heterocycles, chiral P,N-ligand and α-dehydro-β-amino acid derived short peptides from Morita–Baylis–Hillman adducts of ferrocenealdehyde
Author:
Affiliation:
1. Organic Chemistry Section
2. National Institute for Interdisciplinary Science and Technology (CSIR-NIIST)
3. Trivandrum-695 019, India
4. Organic Chemistry Division
5. Central Leather Research Institute (CSIR-CLRI)
6. Chennai-600020, India
Abstract
The golden triangle of Fc, OH/NH, COO moieties created by classical/aza-MBH reaction of ferrocenealdehyde has been exploited for the first time for the synthesis of the title compounds.
Publisher
Royal Society of Chemistry (RSC)
Subject
General Chemical Engineering,General Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2014/RA/C4RA02201G
Reference57 articles.
1. P. Stepnicka , Ferrocenes: Ligands, Materials and Biomolecules , John Wiley & Sons , New York , 2008
2. The syntheses and catalytic applications of unsymmetrical ferrocene ligands
3. L.-X. Dai and X.-L.Hou , Chiral Ferrocenes in Asymmetric Catalysis: Synthesis and Applications , Wiley-VCH , Weinheim , 2010
4. C(sp3)-N Bond-Forming Reductive Elimination of Amines: Reactions of Bisphosphine-Ligated Benzylpalladium(II) Diarylamido Complexes
5. Recent Applications of Chiral Ferrocene Ligands in Asymmetric Catalysis
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1. Applications of the Morita–Baylis–Hillman Reaction in the Synthesis of Heterocyclic Systems;Advances in Heterocyclic Chemistry;2019
2. Recent Advances in the Synthesis of Ferrocene-Based Heterocycles by Multicomponent Reactions: A Review;Current Organic Chemistry;2019-01-01
3. Immobilized copper iodide on a porous organic polymer bearing P,N-ligation sites: A highly efficient heterogeneous catalyst for C O bond formation reaction;Molecular Catalysis;2017-09
4. Four-Membered Ring Systems;Progress in Heterocyclic Chemistry;2015
5. Intramolecular Morita–Baylis–Hillman and Rauhut–Currier reactions. A catalytic and atom economic route for carbocycles and heterocycles;RSC Advances;2015
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