The factors determining diastereoselectivity observed in the multicomponent conversion of amino acids, aziridine aldehyde dimers, and isocyanides into chiral piperazinones have been investigated. Amino acid-dependent selectivity for either <i>trans</i>- or <i>cis</i>-substituted piperazinone products has been achieved. An experimentally determined diastereoselectivity model for the three-component reaction driven by aziridine aldehyde dimers has predictive value for different substrate classes. Moreover, this model is useful in reconciling the previously reported observations in multicomponent reactions between isocyanides, α-amino acids, and monofunctional aldehydes
In recent years, our group has reported the highly diastereoselective acid-catalyzed <i>N</i>,<i>O</...
The Ti(IV)-catalyzed Ugi condensation of α-amino acids with electron-rich aromatic aldehydes perform...
Recently, the amino derivatives of the iminosugars have stimulated significant interest for their hi...
The factors determining diastereoselectivity observed in the multicomponent conversion of amino acid...
A multicomponent reaction between an aziridine aldehyde dimer, isocyanide, and l-proline to afford a...
In 2006, an amphoteric molecule containing both an aldehyde and an unprotected amine was reported in...
The piperazine heterocycle is housed within a large number of FDA-approved drugs and biological prob...
Enantiomerically pure β-aminoalcohols, produced through an organocatalytic Mannich reaction, were su...
A series of chiral 5,6-dihydro-1,4-oxazin-2-one substrates, as preformed cyclic aldimines and ketoim...
A direct synthetic procedure to obtain chiral aziridines is reported, involving a diastereoselective...
The first application of aziridine aldehyde dimers in solid-phase synthesis is reported. The solid-s...
The diastereoselectivity of azido-Ugi reaction with cyclic amines was investigated. It was found tha...
Most nucleophilic aziridine ring opening reactions suffer from poor regio- and stereoselectivity. A ...
Diastereoselectivity in Passerini and Ugi reactions of chiral aldehydes/imines remains challenging. ...
Diastereoselective Ugi reactions of DMAP-based aldehydes with α-amino acids and tert-butyl isocyanid...
In recent years, our group has reported the highly diastereoselective acid-catalyzed <i>N</i>,<i>O</...
The Ti(IV)-catalyzed Ugi condensation of α-amino acids with electron-rich aromatic aldehydes perform...
Recently, the amino derivatives of the iminosugars have stimulated significant interest for their hi...
The factors determining diastereoselectivity observed in the multicomponent conversion of amino acid...
A multicomponent reaction between an aziridine aldehyde dimer, isocyanide, and l-proline to afford a...
In 2006, an amphoteric molecule containing both an aldehyde and an unprotected amine was reported in...
The piperazine heterocycle is housed within a large number of FDA-approved drugs and biological prob...
Enantiomerically pure β-aminoalcohols, produced through an organocatalytic Mannich reaction, were su...
A series of chiral 5,6-dihydro-1,4-oxazin-2-one substrates, as preformed cyclic aldimines and ketoim...
A direct synthetic procedure to obtain chiral aziridines is reported, involving a diastereoselective...
The first application of aziridine aldehyde dimers in solid-phase synthesis is reported. The solid-s...
The diastereoselectivity of azido-Ugi reaction with cyclic amines was investigated. It was found tha...
Most nucleophilic aziridine ring opening reactions suffer from poor regio- and stereoselectivity. A ...
Diastereoselectivity in Passerini and Ugi reactions of chiral aldehydes/imines remains challenging. ...
Diastereoselective Ugi reactions of DMAP-based aldehydes with α-amino acids and tert-butyl isocyanid...
In recent years, our group has reported the highly diastereoselective acid-catalyzed <i>N</i>,<i>O</...
The Ti(IV)-catalyzed Ugi condensation of α-amino acids with electron-rich aromatic aldehydes perform...
Recently, the amino derivatives of the iminosugars have stimulated significant interest for their hi...