The application of an iridium-catalyzed hydrogen borrowing process to enable the formation of α-branched ketones with higher alcohols is described. In order to facilitate this reaction, ortho-disubstituted phenyl and cyclopropyl ketones were recognized as crucial structural motifs for C-C bond formation. Having optimized the key catalysis step, the ortho-disubstituted phenyl products could be further manipulated by a retro-Friedel-Crafts acylation reaction to produce synthetically useful carboxylic acid derivatives. In contrast, the cyclopropyl ketones underwent homoconjugate addition with several nucleophiles to provide further functionalized branched ketone products
Reported herein is the use of catalytic [{Ir(cod)Cl}2] to facilitate hydrogen-borrowing reactions of...
###EgeUn###Iridium(I) complexes having an imidazol-2-ylidene ligand with benzylic wingtips efficient...
Chapter 1: Introduction The introduction discusses the prevalence of cyclohexenes, as well as an ove...
The application of an iridium-catalyzed hydrogen borrowing process to enable the formation of α-bran...
The application of an iridium-catalyzed hydrogen borrowing process to enable the formation of α-bran...
The alkylation of a variety of ketones using 1° or 2° alcohols under hydrogen borrowing catalysis is...
This dissertation explores how the scope of hydrogen borrowing reactions can be further expanded to ...
A hydrogen borrowing reaction employing secondary alcohols and Ph* (Me5C6) ketones to give β-branche...
Introduction – Hydrogen Borrowing Alkylation Reactions Using Alcohols The introduction reviews the o...
Introduction â Hydrogen Borrowing Alkylation Reactions Using Alcohols The introduction reviews the o...
An enantioconvergent method for the alkylation of o-disubstituted aryl ketones with racemic secondar...
A vinyl cyclopropane rearrangement embedded in an iridium‐catalyzed hydrogen borrowing reaction enab...
A vinyl cyclopropane rearrangement embedded in an iridium‐catalyzed hydrogen borrowing reaction enab...
A hydrogen borrowing reaction employing secondary alcohols and Ph* (Me<sub>5</sub>C<sub>6</sub>) ket...
Pentamethylphenyl (Ph*) ketones are rapidly emerging as versatile and useful building blocks for org...
Reported herein is the use of catalytic [{Ir(cod)Cl}2] to facilitate hydrogen-borrowing reactions of...
###EgeUn###Iridium(I) complexes having an imidazol-2-ylidene ligand with benzylic wingtips efficient...
Chapter 1: Introduction The introduction discusses the prevalence of cyclohexenes, as well as an ove...
The application of an iridium-catalyzed hydrogen borrowing process to enable the formation of α-bran...
The application of an iridium-catalyzed hydrogen borrowing process to enable the formation of α-bran...
The alkylation of a variety of ketones using 1° or 2° alcohols under hydrogen borrowing catalysis is...
This dissertation explores how the scope of hydrogen borrowing reactions can be further expanded to ...
A hydrogen borrowing reaction employing secondary alcohols and Ph* (Me5C6) ketones to give β-branche...
Introduction – Hydrogen Borrowing Alkylation Reactions Using Alcohols The introduction reviews the o...
Introduction â Hydrogen Borrowing Alkylation Reactions Using Alcohols The introduction reviews the o...
An enantioconvergent method for the alkylation of o-disubstituted aryl ketones with racemic secondar...
A vinyl cyclopropane rearrangement embedded in an iridium‐catalyzed hydrogen borrowing reaction enab...
A vinyl cyclopropane rearrangement embedded in an iridium‐catalyzed hydrogen borrowing reaction enab...
A hydrogen borrowing reaction employing secondary alcohols and Ph* (Me<sub>5</sub>C<sub>6</sub>) ket...
Pentamethylphenyl (Ph*) ketones are rapidly emerging as versatile and useful building blocks for org...
Reported herein is the use of catalytic [{Ir(cod)Cl}2] to facilitate hydrogen-borrowing reactions of...
###EgeUn###Iridium(I) complexes having an imidazol-2-ylidene ligand with benzylic wingtips efficient...
Chapter 1: Introduction The introduction discusses the prevalence of cyclohexenes, as well as an ove...