Palladium-Catalyzed Aerobic Oxidative Cyclization of <i>N</i>-Aryl Imines: Indole Synthesis from Anilines and Ketones
作者:Ye Wei、Indubhusan Deb、Naohiko Yoshikai
DOI:10.1021/ja3030824
日期:2012.6.6
We report here an operationally simple, palladium-catalyzed cyclization reaction of N-aryl imines, affording indoles via the oxidative linkage of two C-H bonds under mild conditions using molecular oxygen as the sole oxidant. The process allows quick and atom-economical assembly of indole rings from inexpensive and readily available anilines and ketones and tolerates a broad range of functional groups
Chloroform as a Carbon Monoxide Precursor: <i>In</i> or <i>Ex Situ</i> Generation of CO for Pd-Catalyzed Aminocarbonylations
作者:Samuel N. Gockel、Kami L. Hull
DOI:10.1021/acs.orglett.5b01385
日期:2015.7.2
Conditions for the rapid hydrolysis of chloroform to carbonmonoxide (CO) using heterogeneous CsOH·H2O are described. CO and 13CO can be generated cleanly and rapidly under mild conditions and can be captured either in or ex situ in palladium-catalyzedaminocarbonylationreactions. Utilizing only 1–3 equiv of CO allows for the aminocarbonylation of aryl, vinyl, and benzyl halides with a wide variety
Mesoporous poly-melamine-formaldehyde stabilized palladium nanoparticle (Pd@mPMF) catalyzed mono and double carbonylation of aryl halides with amines
作者:Rostam Ali Molla、Md. Asif Iqubal、Kajari Ghosh、Anupam Singha Roy、Kamaluddin Kamaluddin、Sk. Manirul Islam
DOI:10.1039/c4ra07554d
日期:——
A new mesoporous polymer stabilized Pd nano (mPMF–Pd0) has been synthesized and well characterized. The catalytic performance of this complex has been tested for mono and double carbonylation of aryl halides with amines.
Tandem Photoredox Catalysis: Enabling Carbonylative Amidation of Aryl and Alkylhalides
作者:José A. Forni、Nenad Micic、Timothy U. Connell、Geethika Weragoda、Anastasios Polyzos
DOI:10.1002/anie.202006720
日期:2020.10.12
visible‐light‐mediated carbonylative amidation of aryl, heteroaryl, and alkyl halides. A tandem catalytic cycle of [Ir(ppy)2(dtb‐bpy)]+ generates a potent iridium photoreductant through a second catalytic cycle in the presence of DIPEA, which productively engages aryl bromides, iodides, and even chlorides as well as primary, secondary, and tertiary alkyl iodides. The versatile in situ generated catalyst is compatible
Transition metal‐catalyzed aminocarbonylation of aryl halides with CO and amines, pioneered by Heck and co‐workers in the 1970s, is among the most commonly employed reactions to make aromatic amides. A catalyst‐free aminocarbonylation of aryliodides with CO and amines, which simply uses photoirradiation conditions by Xe‐lamp, has now been developed. This methodology shows broad functional‐group tolerance