Herein we disclose an iron-catalyzed cross-coupling reaction of propargyl ethers with Grignard reagents. The reaction was demonstrated to be stereospecific and allows for a facile preparation of optically active allenes via efficient chirality transfer. Various tri- and tetrasubstituted fluoroalkyl allenes can be obtained in good to excellent yields. In addition, an iron-catalyzed cross-coupling of Grignard reagents with α-alkynyl oxetanes and tetrahydrofurans is disclosed herein, which constitutes a straightforward approach towards fully substituted β- or γ-allenols, respectively
Although iron-catalyzed cross-coupling reactions of arylmagnesium halides with alkyl halides are wel...
A palladium-catalyzed cross-coupling between in situ generated allenyl/propargyl-lithium species and...
Structurally diverse 1,3-dienes are valuable building blocks in organic synthesis. Herein we report ...
Herein we disclose an iron-catalyzed cross-coupling reaction of propargyl ethers with Grignard reage...
Reliable chirality transfer is one of the major advantages of a novel synthesis of 2,3-allenols from...
The copper catalyzed reaction of Grignard reagents with asymetric propargylic ethers leads to chiral...
α-Allenols are attractive and versatile compounds whose preparation can be a nontrivial task. In thi...
An efficient iron-catalyzed cross-coupling reaction between alkynyl bromides and Grignard-derived or...
An efficient iron-catalyzed cross-coupling reaction between alkynyl bromides and Grignard-derived or...
An efficient iron-catalyzed cross-coupling reaction between alkynyl bromides and Grignard-derived or...
A palladium-catalyzed cross-coupling between in situ generated allenyl/propargyl-lithium species and...
A palladium-catalyzed cross-coupling between in situ generated allenyl/propargyl-lithium species and...
A palladium-catalyzed cross-coupling between in situ generated allenyl/propargyl-lithium species and...
A palladium-catalyzed cross-coupling between in situ generated allenyl/propargyl-lithium species and...
A palladium-catalyzed cross-coupling between in situ generated allenyl/propargyl-lithium species and...
Although iron-catalyzed cross-coupling reactions of arylmagnesium halides with alkyl halides are wel...
A palladium-catalyzed cross-coupling between in situ generated allenyl/propargyl-lithium species and...
Structurally diverse 1,3-dienes are valuable building blocks in organic synthesis. Herein we report ...
Herein we disclose an iron-catalyzed cross-coupling reaction of propargyl ethers with Grignard reage...
Reliable chirality transfer is one of the major advantages of a novel synthesis of 2,3-allenols from...
The copper catalyzed reaction of Grignard reagents with asymetric propargylic ethers leads to chiral...
α-Allenols are attractive and versatile compounds whose preparation can be a nontrivial task. In thi...
An efficient iron-catalyzed cross-coupling reaction between alkynyl bromides and Grignard-derived or...
An efficient iron-catalyzed cross-coupling reaction between alkynyl bromides and Grignard-derived or...
An efficient iron-catalyzed cross-coupling reaction between alkynyl bromides and Grignard-derived or...
A palladium-catalyzed cross-coupling between in situ generated allenyl/propargyl-lithium species and...
A palladium-catalyzed cross-coupling between in situ generated allenyl/propargyl-lithium species and...
A palladium-catalyzed cross-coupling between in situ generated allenyl/propargyl-lithium species and...
A palladium-catalyzed cross-coupling between in situ generated allenyl/propargyl-lithium species and...
A palladium-catalyzed cross-coupling between in situ generated allenyl/propargyl-lithium species and...
Although iron-catalyzed cross-coupling reactions of arylmagnesium halides with alkyl halides are wel...
A palladium-catalyzed cross-coupling between in situ generated allenyl/propargyl-lithium species and...
Structurally diverse 1,3-dienes are valuable building blocks in organic synthesis. Herein we report ...