This doctoral thesis deals with the development of novel organocatalytic strategies for asymmetric transformation. The intrinsic versatility of organocatalysis and the use of different activation modes have been exploited to achieve new catalytic enantioselective processes, towards the synthesis of biologically relevant scaffolds. The most investigated organocatalytic system have been those based on H-bond interaction (such as chiral thioureas or phosphoric acids) as well as the ones based on aminocatalysis. Despite conceptually distinct, the transformations detailed in this Thesis are linked together by simple and recurring modes of activation, induction and reactivity, promoted by the catalysts employed. The chemical diversity of the ch...
Since the beginning of the millennium, organocatalysis has been gaining a predominant role in asymme...
Enantioselective organocatalysis has quickly established itself as the third pillar of asymmetric ca...
Enantioselective organocatalysis has quickly established itself as the third pillar of asymmetric ca...
This PhD thesis focuses on asymmetric organocatalysis. This strategy allows to obtain enantioenriche...
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...
The main aim of my PhD project was the design and the synthesis of new pyrrolidine organocatalysts. ...
During the PhD Luca Mengozzi studied reactions involving carbocations or carbocationic intermediates...
During the course of my Ph.D. in the laboratories directed by Prof. Alfredo Ricci at the Department ...
Nowadays, the development of new enantioselective processes is highly relevant in chemistry due to t...
The design of new reactions for carbon-carbon bond formation is certainly the main field in which th...
Keywords: Organocatalyst, Axial chirality, Aldol reaction, Mannich reaction, amino acid. The field...
Keywords: Organocatalyst, Axial chirality, Aldol reaction, Mannich reaction, amino acid. The field...
Enantioselective organocatalysis has quickly established itself as the third pillar of asymmetric ca...
Since the beginning of the millennium, organocatalysis has been gaining a predominant role in asymme...
Enantioselective organocatalysis has quickly established itself as the third pillar of asymmetric ca...
Enantioselective organocatalysis has quickly established itself as the third pillar of asymmetric ca...
This PhD thesis focuses on asymmetric organocatalysis. This strategy allows to obtain enantioenriche...
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...
The main aim of my PhD project was the design and the synthesis of new pyrrolidine organocatalysts. ...
During the PhD Luca Mengozzi studied reactions involving carbocations or carbocationic intermediates...
During the course of my Ph.D. in the laboratories directed by Prof. Alfredo Ricci at the Department ...
Nowadays, the development of new enantioselective processes is highly relevant in chemistry due to t...
The design of new reactions for carbon-carbon bond formation is certainly the main field in which th...
Keywords: Organocatalyst, Axial chirality, Aldol reaction, Mannich reaction, amino acid. The field...
Keywords: Organocatalyst, Axial chirality, Aldol reaction, Mannich reaction, amino acid. The field...
Enantioselective organocatalysis has quickly established itself as the third pillar of asymmetric ca...
Since the beginning of the millennium, organocatalysis has been gaining a predominant role in asymme...
Enantioselective organocatalysis has quickly established itself as the third pillar of asymmetric ca...
Enantioselective organocatalysis has quickly established itself as the third pillar of asymmetric ca...