Catalysts possessing sufficient activity to achieve intermolecular alkene hydroaminations under mild conditions are rare, and this likely accounts for the scarcity of asymmetric variants of this reaction. Herein, highly diastereoselective hydroaminations of allylic amines utilizing hydroxylamines as reagents and formaldehyde as catalyst are reported. This catalyst induces temporary intramolecularity, which results in high rate accelerations, and high diastereocontrol with either chiral allylic amines or chiral hydroxylamines. The reaction scope includes internal alkenes. Overall this work provides a new, stereocontrolled route to form complex vicinal diamines
The synthesis of 1,2-diamines via a Rh-catalyzed intermolecular hydroamination of <i>N</i>-allyl imi...
Part 1 Homoallylic alcohols are versatile synthons in natural product synthesis. They are most effic...
The catalytic hydroamination of alkenes provides an efficient and direct entry to synthetically usef...
Stereoselective hydroaminations of unactivated alkenes are rare as this represents a very challengin...
C–N bonds are ubiquitous in organic chemistry. Mild methods that allow for the direct formation of t...
Intermolecular hydroamination of unactivated alkenes represents a significant synthetic challenge. A...
Carbon-nitrogen bonds are found in many societally important molecules, ranging from bulk commoditie...
The asymmetric aldol reaction with formaldehyde is a fundamental carbon-carbon bond-forming reaction...
The highly regio- and enantioselective hydroxyamination of aldehydes with <i>in situ</i> generated n...
Hydroamination of alkenes, the addition of the N-H bond of an amine across an alkene, is a fundament...
The hydroamination of internal alkynes via tandem rhodium catalysis gives branched <i>N</i>-allylic ...
Amines are a prominent functionality found throughout organic molecules, including pharmaceuticals, ...
A new primary amine catalyst for the asymmetric α-hydroxylation and α-fluorination of α-branched ald...
Hydroxymethylation of cyclic <i>tert</i>-butanesulfinylketimine-derived lithium enamides with methox...
We report the development of highly enantio- and regioselective Pd-catalyzed intermolecular hydroami...
The synthesis of 1,2-diamines via a Rh-catalyzed intermolecular hydroamination of <i>N</i>-allyl imi...
Part 1 Homoallylic alcohols are versatile synthons in natural product synthesis. They are most effic...
The catalytic hydroamination of alkenes provides an efficient and direct entry to synthetically usef...
Stereoselective hydroaminations of unactivated alkenes are rare as this represents a very challengin...
C–N bonds are ubiquitous in organic chemistry. Mild methods that allow for the direct formation of t...
Intermolecular hydroamination of unactivated alkenes represents a significant synthetic challenge. A...
Carbon-nitrogen bonds are found in many societally important molecules, ranging from bulk commoditie...
The asymmetric aldol reaction with formaldehyde is a fundamental carbon-carbon bond-forming reaction...
The highly regio- and enantioselective hydroxyamination of aldehydes with <i>in situ</i> generated n...
Hydroamination of alkenes, the addition of the N-H bond of an amine across an alkene, is a fundament...
The hydroamination of internal alkynes via tandem rhodium catalysis gives branched <i>N</i>-allylic ...
Amines are a prominent functionality found throughout organic molecules, including pharmaceuticals, ...
A new primary amine catalyst for the asymmetric α-hydroxylation and α-fluorination of α-branched ald...
Hydroxymethylation of cyclic <i>tert</i>-butanesulfinylketimine-derived lithium enamides with methox...
We report the development of highly enantio- and regioselective Pd-catalyzed intermolecular hydroami...
The synthesis of 1,2-diamines via a Rh-catalyzed intermolecular hydroamination of <i>N</i>-allyl imi...
Part 1 Homoallylic alcohols are versatile synthons in natural product synthesis. They are most effic...
The catalytic hydroamination of alkenes provides an efficient and direct entry to synthetically usef...