A tripeptide-like prolinamide-thiourea catalyst with (S)-proline, (1S,2S)-diphenylethylenediamine and (S)-di-tert-butyl aspartate as building blocks provides the products of the reaction between ketones and aromatic aldehydes in high to quantitative yields and high stereoselectivities (up to 99 : 1 dr and 99% ee). Both the chiral centers of the diamine unit are essential, while the thiourea hydrogen originating from the amine and the amide hydrogen play a predominant role for the catalyst efficiency
Although anion-binding processes are well-known for their crucial role in molecular recognition, the...
Although anion-binding processes are well-known for their crucial role in molecular recognition, the...
Although anion-binding processes are well-known for their crucial role in molecular recognition, the...
A tripeptide-like prolinamide-thiourea catalyst with (S)-proline, (1S,2S)-diphenylethylenediamine an...
The majority of the organocatalysts developed up to now for asymmetric organic transformations emplo...
The majority of the organocatalysts developed up to now for asymmetric organic transformations emplo...
At the beginning of the 21st century, organocatalysis has emerged as a new powerful methodology for ...
At the beginning of the 21st century, organocatalysis has emerged as a new powerful methodology for ...
Enzymes are the foundation upon which the majority of organocatalysts bearing more than one catalyti...
Enzymes are the foundation upon which the majority of organocatalysts bearing more than one catalyti...
Nowadays, organocatalysis constitutes the third pillar of asymmetric catalysis, alongside transition...
Nowadays, organocatalysis constitutes the third pillar of asymmetric catalysis, alongside transition...
Nowadays, organocatalysis constitutes the third pillar of asymmetric catalysis, alongside transition...
Producción CientíficaProlinamides are valuable organocatalysts for enantioselective transformations ...
The organocatalyzed synthesis of the Wieland‐Miescher ketone (WMK) via N‐sulfonyl‐binamprolinamide c...
Although anion-binding processes are well-known for their crucial role in molecular recognition, the...
Although anion-binding processes are well-known for their crucial role in molecular recognition, the...
Although anion-binding processes are well-known for their crucial role in molecular recognition, the...
A tripeptide-like prolinamide-thiourea catalyst with (S)-proline, (1S,2S)-diphenylethylenediamine an...
The majority of the organocatalysts developed up to now for asymmetric organic transformations emplo...
The majority of the organocatalysts developed up to now for asymmetric organic transformations emplo...
At the beginning of the 21st century, organocatalysis has emerged as a new powerful methodology for ...
At the beginning of the 21st century, organocatalysis has emerged as a new powerful methodology for ...
Enzymes are the foundation upon which the majority of organocatalysts bearing more than one catalyti...
Enzymes are the foundation upon which the majority of organocatalysts bearing more than one catalyti...
Nowadays, organocatalysis constitutes the third pillar of asymmetric catalysis, alongside transition...
Nowadays, organocatalysis constitutes the third pillar of asymmetric catalysis, alongside transition...
Nowadays, organocatalysis constitutes the third pillar of asymmetric catalysis, alongside transition...
Producción CientíficaProlinamides are valuable organocatalysts for enantioselective transformations ...
The organocatalyzed synthesis of the Wieland‐Miescher ketone (WMK) via N‐sulfonyl‐binamprolinamide c...
Although anion-binding processes are well-known for their crucial role in molecular recognition, the...
Although anion-binding processes are well-known for their crucial role in molecular recognition, the...
Although anion-binding processes are well-known for their crucial role in molecular recognition, the...