The heterodimerizing self-assembly between a phosphoric acid catalyst and a carboxylic acid has recently been established as a new activation mode in Brønsted acid catalysis. In this article, we present a comprehensive mechanistic investigation on this activation principle, which eventually led to its elucidation. Detailed studies are reported, including computational investigations on the supramolecular heterodimer, kinetic studies on the catalytic cycle, and a thorough analysis of transition states by DFT calculations for the rationalization of the catalyst structure–selectivity relationship. On the basis of these investigations, we developed a kinetic resolution of racemic epoxides, which proceeds with high selectivity (up to s = 93), gi...
This thesis describes studies on non-classical carbocations and enols in asymmetric catalysis. In th...
Chiral Brønsted acidic small molecules have found widespread applications as organocatalysts from th...
Asymmetric catalysis using two chiral catalysts in combination using one-pot reaction conditions is ...
The heterodimerizing self-assembly between a phosphoric acid catalyst and a carboxylic acid has rece...
The heterodimerizing self-assembly between a phosphoric acid catalyst and a carboxylic acid has rece...
Organocatalysis, catalysis using small organic molecules, has recently evolved into a general approa...
Chiral phosphoric acid diesters arguably constitute the most exploited class of catalysts in asymmet...
The hydrolytic ring opening of epoxides is an important biosynthetic transformation and is also appl...
Organocatalysis has revolutionized asymmetric synthesis. However, the supramolecular interactions of...
Computations and experiments leading to new chiral phosphoric acids (CPAs) for epoxide thionations a...
Computations and experiments leading to new chiral phosphoric acids (CPAs) for epoxide thionations a...
The research described herein focuses on enantioselective catalysis using BINOL-based Brønsted acids...
In the last twenty years, chiral Brønsted acid and chiral counteranion catalysis have emerged as a f...
This thesis describes the application of computational chemistry to understand the origins of the r...
Chiral phosphoric acid (CPA) catalysts have witnessed rapid development recently. They have demonstr...
This thesis describes studies on non-classical carbocations and enols in asymmetric catalysis. In th...
Chiral Brønsted acidic small molecules have found widespread applications as organocatalysts from th...
Asymmetric catalysis using two chiral catalysts in combination using one-pot reaction conditions is ...
The heterodimerizing self-assembly between a phosphoric acid catalyst and a carboxylic acid has rece...
The heterodimerizing self-assembly between a phosphoric acid catalyst and a carboxylic acid has rece...
Organocatalysis, catalysis using small organic molecules, has recently evolved into a general approa...
Chiral phosphoric acid diesters arguably constitute the most exploited class of catalysts in asymmet...
The hydrolytic ring opening of epoxides is an important biosynthetic transformation and is also appl...
Organocatalysis has revolutionized asymmetric synthesis. However, the supramolecular interactions of...
Computations and experiments leading to new chiral phosphoric acids (CPAs) for epoxide thionations a...
Computations and experiments leading to new chiral phosphoric acids (CPAs) for epoxide thionations a...
The research described herein focuses on enantioselective catalysis using BINOL-based Brønsted acids...
In the last twenty years, chiral Brønsted acid and chiral counteranion catalysis have emerged as a f...
This thesis describes the application of computational chemistry to understand the origins of the r...
Chiral phosphoric acid (CPA) catalysts have witnessed rapid development recently. They have demonstr...
This thesis describes studies on non-classical carbocations and enols in asymmetric catalysis. In th...
Chiral Brønsted acidic small molecules have found widespread applications as organocatalysts from th...
Asymmetric catalysis using two chiral catalysts in combination using one-pot reaction conditions is ...