Herein, we describe the use of IR irradiation to promote Pd-catalyzed C(sp3)─H arylation and tandem C(sp3)─H arylation/electrophilic aromatic cyclization of ortho-tolualdehydes with aryl iodides via a transient directing group (TDG) strategy. The optimized conditions employ Pd(OAc)2 (10 mol%) as the catalyst, glycine (40 mol%) as the TDG, and AgTFA (1.5 equiv.) as the additive in an AcOH/H2O (9:1, v/v) solvent mixture under irradiation with a 250 W IR lamp. The reaction time (30 min) is considerably shorter than previously reported reaction times for similar reactions performed under thermal heating (12–48 h, 90°C–130°C). The reaction outcome under infrared (IR) irradiation strongly depends on the electronic nature of the substituents on the aryl iodides: electron-withdrawing groups at any position and electron-donating groups at the ortho and/or para positions favor the Pd-catalyzed C(sp3)─H arylation, leading to 2-benzylbenzaldehydes, whereas, in the presence of electron-donating groups at the meta-position, a tandem C(sp3)─H arylation/electrophilic aromatic cyclization occurs, producing substituted anthracenes.
Infrared Irradiation‐Assisted Pd‐Catalyzed C(sp 3 )─H Arylation and Tandem Cyclization of Ortho ‐Tolualdehydes
Martina, Matteo Renato;Fiore, Ambra Maria;Punzi, Angela;Albano, Gianluigi;Ragni, Roberta;Cotugno, Pietro;Farinola, Gianluca Maria
2026-01-01
Abstract
Herein, we describe the use of IR irradiation to promote Pd-catalyzed C(sp3)─H arylation and tandem C(sp3)─H arylation/electrophilic aromatic cyclization of ortho-tolualdehydes with aryl iodides via a transient directing group (TDG) strategy. The optimized conditions employ Pd(OAc)2 (10 mol%) as the catalyst, glycine (40 mol%) as the TDG, and AgTFA (1.5 equiv.) as the additive in an AcOH/H2O (9:1, v/v) solvent mixture under irradiation with a 250 W IR lamp. The reaction time (30 min) is considerably shorter than previously reported reaction times for similar reactions performed under thermal heating (12–48 h, 90°C–130°C). The reaction outcome under infrared (IR) irradiation strongly depends on the electronic nature of the substituents on the aryl iodides: electron-withdrawing groups at any position and electron-donating groups at the ortho and/or para positions favor the Pd-catalyzed C(sp3)─H arylation, leading to 2-benzylbenzaldehydes, whereas, in the presence of electron-donating groups at the meta-position, a tandem C(sp3)─H arylation/electrophilic aromatic cyclization occurs, producing substituted anthracenes.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.


