A palladium-catalyzed cross-coupling between in situ generated allenyl/propargyl-lithium species and aryl bromides to yield highly functionalized allenes is reported. The direct and selective formation of allenic products preventing the corresponding isomeric propargylic product is accomplished by the choice of SPhos or XPhos based Pd catalysts. The methodology avoids the prior transmetalation to other transition metals or reverse approaches that required prefunctionalization of substrates with leaving groups, resulting in a fast and efficient approach for the synthesis of tri- and tetrasubstituted allenes. Experimental and theoretical studies on the mechanism show catalyst control of selectivity in this allene formation.</p
Palladium-catalysed cross-coupling of secondary C(sp(3)) organometallic reagents has been a long-sta...
Palladium-catalysed cross-coupling of secondary C(sp(3)) organometallic reagents has been a long-sta...
Palladium-catalysed cross-coupling of secondary C(sp(3)) organometallic reagents has been a long-sta...
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...
Allenes are structurally unique compounds that can possess axial chirality. The most common strategy...
Allenes are structurally unique compounds that can possess axial chirality. The most common strategy...
Palladium-catalyzed direct cross-coupling of aryl chlorides with a wide range of (hetero)aryl lithiu...
Transition metal-catalyzed cyclization reactions involving allenes were demonstrated as useful metho...
Palladium-catalyzed direct cross-coupling of aryl chlorides with a wide range of (hetero)aryl lithiu...
Palladium-catalyzed direct cross-coupling of aryl chlorides with a wide range of (hetero)aryl lithiu...
Palladium-catalyzed direct cross-coupling of aryl chlorides with a wide range of (hetero)aryl lithiu...
Palladium-catalysed cross-coupling of secondary C(sp(3)) organometallic reagents has been a long-sta...
Palladium-catalysed cross-coupling of secondary C(sp(3)) organometallic reagents has been a long-sta...
Palladium-catalysed cross-coupling of secondary C(sp(3)) organometallic reagents has been a long-sta...
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...
Allenes are structurally unique compounds that can possess axial chirality. The most common strategy...
Allenes are structurally unique compounds that can possess axial chirality. The most common strategy...
Palladium-catalyzed direct cross-coupling of aryl chlorides with a wide range of (hetero)aryl lithiu...
Transition metal-catalyzed cyclization reactions involving allenes were demonstrated as useful metho...
Palladium-catalyzed direct cross-coupling of aryl chlorides with a wide range of (hetero)aryl lithiu...
Palladium-catalyzed direct cross-coupling of aryl chlorides with a wide range of (hetero)aryl lithiu...
Palladium-catalyzed direct cross-coupling of aryl chlorides with a wide range of (hetero)aryl lithiu...
Palladium-catalysed cross-coupling of secondary C(sp(3)) organometallic reagents has been a long-sta...
Palladium-catalysed cross-coupling of secondary C(sp(3)) organometallic reagents has been a long-sta...
Palladium-catalysed cross-coupling of secondary C(sp(3)) organometallic reagents has been a long-sta...