The development of the first highly active enantioselective catalyst for the aza-Claisen rearrangement of Z-configured allylic trifluoroacetimidates generating valuable almost enantiopure protected allylic amines is described. Usually Z-configured allylic imidates react significantly slower than their E-configured counterparts, but in the present study the opposite effect was observed. Z-Configured olefins have the principal practical advantage that a geometrically pure C=C double bond can be readily obtained, for example, by semihydrogenations of alkynes. Our catalyst, a C(2)-symmetric planar chiral bispalladacycle complex, is rapidly prepared from ferrocene in four simple steps. Key step of this protocol is an unprecedented highly diastereoselective biscyclopalladation providing dimeric macrocyclic complexes of fascinating structure. In the present study as little as 0.1 mol % of catalyst precursor were sufficient for most of the alkyl substituted substrates to give in general almost quantitative yields. NMR investigations revealed a monomeric structure for the active catalyst species. The bispalladacycle can also be used for the formation of almost enantiomerically pure allylic amines (ee > or =96 %) substituted with important functional groups such as ester, ketone, ether, silyl ether, acetal or protected amino moieties providing high-added-value allylic amine building blocks in excellent yield (> or =94 %). The preparative advantages should render this methodology highly appealing as a practical and valuable tool for the formation of allylic amines in target oriented synthesis.
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http://dx.doi.org/10.1002/chem.200701642 | DOI Listing |
Org Lett
March 2025
State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University, Changsha 410082, People's Republic of China.
A dinickel-catalyzed direct asymmetric allylic alkylation of benzocyclic ketones has been developed. This method enables the efficient transformation of various α-alkyl benzocyclohexanones and benzocyclopentanones with allylic sulfonamides, affording chiral ketones bearing α-quaternary carbon stereocenters in high yields and with excellent enantioselectivities.
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February 2025
Department of Chemistry and Biochemistry, The University of Texas at Dallas, Richardson, Texas 75080-3021, United States.
ConspectusThe past decade has witnessed significant advancements of visible-light-induced photocatalysis, establishing it as a powerful and versatile tool in organic synthesis. The major focus of this field has centered on the development of methodologies that either rely solely on photocatalysts or combine photocatalysis with other catalytic methods, such as transition metal catalysis, to address a broader and more diverse array of transformations. Within this rapidly evolving area, a subfield that we refer to as transition metal photocatalysis has garnered significant attention due to its growing impact and mechanistic uniqueness.
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February 2025
Maria Curie-Sklodowska University: Uniwersytet Marii Curie-Sklodowskiej, Department of Virology and Immunology, Akademicka 19 St., 20-033, Lublin, POLAND.
Cyclic sulfones play an important role in the field of drug discovery and design due to their valuable properties and their broad range of applications. Herein, we report an efficient cerium(IV)-catalyzed allylic oxidation of a simple 3-sulfolene. This process provides a straightforward and facile approach to sulfol-2-en-4-one, a versatile synthetic intermediate.
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February 2025
The Modernization Engineering Technology Research Center of Ethnic Minority Medicine of Hubei Province, School of Pharmaceutical Sciences, South-Central Minzu University, Wuhan 430074, China.
A cooperative palladium/chiral amine enabled diastereo- and enantioselective [3 + 2] cycloaddition of π-allyl 1,3-dipoles with α,β-unsaturated aldehydes has been developed. A series of highly functionalized cyclopentanes bearing three continuous tertiary stereocenters can be facilely and efficiently obtained in good to excellent yields (51-97%) with synthetically useful diastereo- and enantioselectivity (93-99% ee) under mild reaction conditions. Control experiments and HRMS analyses were conducted to elucidate the possible mechanism.
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February 2025
Department of Chemistry, Indian Institute of Technology Madras, Chennai 600036, Tamil Nadu, India.
An intermolecular coupling between sulfoximines and allyl amines, linked to the picolinamide directing group, is developed by leveraging a nucleopalladation-guided regioselective hydroamination strategy, enabling the production of a range of valuable -alkyl sulfoximines in high yields. The protocol features operational simplicity and a broad substrate scope and was also amenable to aniline nucleophiles. Synthetic utilities were showcased through scale-up reactions and product diversifications, leading to biorelevant molecules.
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