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Terminal alkynes have become one of the most versatile building blocks for C-C bond construction in the past few decades, and they are usually considered to convert to acetylides before further transformations. In this study, a novel direct nucleophilic addition mode for Cu(I)-catalyzed cross-coupling of terminal alkynes and N-tosylhydrazones to synthesize chiral allenes is proposed, and it was investigated by density functional theory with the M11-L density functional. Three different reaction pathways were considered and investigated. The computational results show that the proposed reaction pathway, which includes direct nucleophilic attack of protonated acetylene, deprotonation of the vinyl cation, and catalyst regeneration, is the most favorable pathway. Another possible deprotonation-carbenation-insertion pathway is shown to be unfavorable. The direct nucleophilic addition step is the rate- and enantioselectivity-determining step in the catalytic cycle. Noncovalent interaction analysis shows that the steric effect between the methyl group of the carbene moiety and the naphthalyl group of the bisoxazoline ligand is important to control the enantioselectivity. In addition, calculation of a series of chiral bisoxazoline ligands shows that a bulky group on the oxazoline ring is favorable for high enantioselectivity, which agrees with experimental observations. Moreover, copper acetylides are stable, and their generation is a favorable pathway in the absence of chiral bisoxazoline ligands.
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http://dx.doi.org/10.1021/jacs.8b13055 | DOI Listing |
Org Lett
September 2025
Department of Medicinal Chemistry, National Institute of Pharmaceutical Education and Research (NIPER), Ahmedabad, Gujarat 382355, India.
Herein, we report an easily tunable and regioselective Pd-catalyzed allene-alkyne coupling protocol for the stereodivergent synthesis of - and -1,3-enynes using purine allenamine by a simple switch of ligands P(-tolyl)Ph and Boc-Phe-OH. For the first time, we have explored mono--protected amino acids (MPAAs) as ligands in allene-alkyne coupling to furnish -1,3-enynes selectively. This protocol streamlined the access to chiral 1,3-enynes and addressed the long-standing stereoselectivity challenges associated with 1,3-enynes from allene-alkyne coupling.
View Article and Find Full Text PDFJ Am Chem Soc
September 2025
Hubei Research Center of Fundamental Science-Chemistry, College of Chemistry and Molecular Sciences, Wuhan University, Wuhan 430072, China.
The stereodivergent synthesis of structurally complex molecules bearing multiple stereochemical elements represents a pivotal challenge in modern synthetic chemistry, particularly for bioactive compounds, where stereochemical nuances dictate pharmacological profiles. While stereodivergent dual catalysis has advanced full access to stereoisomers with stereogenic centers, the integration of stereodefined alkenes into chiral molecules with both stereochemical and skeletal diversification remains elusive. In this study, we report stereo- and skeleton-divergent access to chiral fluorinated -heterocycles with comprehensive stereocontrol of [(,), (,), (,), (,)] and [(,), (,), (,), (,)] enabled by a bimetallic Cu/Ru relay catalytic system, featuring redox-neutral efficiency and atom/step economy.
View Article and Find Full Text PDFAngew Chem Int Ed Engl
August 2025
Centro Singular de Investigación en Química Biolóxica e Materiais Moleculares (CiQUS) and Departamento de Química Orgánica, Universidade de Santiago de Compostela, Santiago de Compostela, 15782, Spain.
An iridium complex featuring the perfluorinated bisphosphine ligand dppe can catalyze intermolecular hydrocarbonation reactions of allenes with precise control over the selectivity to yield highly valuable branched products instead of the more common linear derivatives. Using N-substituted 3-carboxamide pyrroles as C─H donors, the reaction gives exclusively C-4 substituted products, while furan analogues yield C-2 substituted derivatives. β-Unsubstituted acrylamides can also be used as C─H sources to give chiral skipped dienes.
View Article and Find Full Text PDFAngew Chem Int Ed Engl
August 2025
Institut für Organische Chemie, Albert-Ludwigs-Universität Freiburg, Albertstraße 21, 79104, Freiburg im Breisgau, Germany.
In this study, an enantioselective Rh-catalyzed cycloisomerization of 1,5-bis(allenes) to furnish 1,2-cis-ethynyl- and vinyl-substituted five-membered (hetero)cycles in high yields and with excellent diastereo- and enantioselectivity is presented. The possibility of further functionalization to access different chiral cyclic and bicyclic skeletons is provided by the two orthogonal functional groups (alkyne and alkene). We also demonstrate the scalability of the reaction through a gram-scale synthesis and illustrate the synthetic utility of the resulting 1,2-cis-ethynyl- and vinyl-substituted cyclic product via several transformations.
View Article and Find Full Text PDFSTAR Protoc
August 2025
School of Resources & Environment, Nanchang University, Nanchang, Jiangxi 330031, P.R. China. Electronic address:
Chiral allenylsilanes serve as crucial intermediates in the synthesis of complex pharmaceutical molecules and natural products. Here, we present a protocol for synthesizing both racemic and chiral allenylsilanes through copper-catalyzed silylation of propargyl dichlorides. We describe steps for the SN' propargyl silylation reaction between propargyl dichlorides and a silylboronate, followed by the purification of the products.
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