TY - JOUR
T1 - Rhodium-catalysed tetradehydro-Diels-Alder reactions of enediynes
T2 - Via a rhodium-stabilized cyclic allene
AU - Thadkapally, Srinivas
AU - Farshadfar, Kaveh
AU - Drew, Melanie A.
AU - Richardson, Christopher
AU - Ariafard, Alireza
AU - Pyne, Stephen G.
AU - Hyland, Christopher J.T.
N1 - Publisher Copyright:
© The Royal Society of Chemistry.
PY - 2020/10/28
Y1 - 2020/10/28
N2 - Efficient methods for the synthesis of fused-aromatic rings is a critical endeavour in the creation of new pharmaceuticals and materials. A direct method for preparing these systems is the tetradehydro-Diels-Alder reaction, however this is limited by the need for harsh reaction conditions. A potential, but underdeveloped, route to these systems is via transition metal-catalysed cycloaromatisation of ene-diynes. Herein, tethered unconjugated enediynes have been shown to undergo a facile room-temperature RhI-catalysed intramolecular tetradehydro-Diels-Alder reaction to produce highly substituted isobenzofurans, isoindolines and an indane. Furthermore, experimental and computational studies suggest a novel mechanism involving an unprecedented and complex RhI/RhIII/RhI/RhIII redox cycle involving the formation of an unusual strained 7-membered rhodacyclic allene intermediate and a RhIII-stabilized 6-membered ring allene complex.
AB - Efficient methods for the synthesis of fused-aromatic rings is a critical endeavour in the creation of new pharmaceuticals and materials. A direct method for preparing these systems is the tetradehydro-Diels-Alder reaction, however this is limited by the need for harsh reaction conditions. A potential, but underdeveloped, route to these systems is via transition metal-catalysed cycloaromatisation of ene-diynes. Herein, tethered unconjugated enediynes have been shown to undergo a facile room-temperature RhI-catalysed intramolecular tetradehydro-Diels-Alder reaction to produce highly substituted isobenzofurans, isoindolines and an indane. Furthermore, experimental and computational studies suggest a novel mechanism involving an unprecedented and complex RhI/RhIII/RhI/RhIII redox cycle involving the formation of an unusual strained 7-membered rhodacyclic allene intermediate and a RhIII-stabilized 6-membered ring allene complex.
UR - https://www.scopus.com/pages/publications/85094670095
U2 - 10.1039/d0sc04390g
DO - 10.1039/d0sc04390g
M3 - Article
AN - SCOPUS:85094670095
SN - 2041-6520
VL - 11
SP - 10945
EP - 10950
JO - Chemical Science
JF - Chemical Science
IS - 40
ER -