The activation of olefins for asymmetric chemical synthesis traditionally relies on transition metal catalysts. In contrast, biological enzymes with Brønsted acidic sites of appropriate strength can protonate olefins and thereby generate carbocations that ultimately react to form natural products. Although chemists have recently designed chiral Brønsted acid catalysts to activate imines and carbonyl compounds, mimicking these enzymes to protonate simple olefins that then engage in asymmetric catalytic reactions has remained a substantial synthetic challenge. Here, we show that a class of confined and strong chiral Brønsted acids enables the catalytic asymmetric intramolecular hydroalkoxylation of unbiased olefins. The methodology gives rapi...
This work focuses on the conceptual development of highly confined, super acidic Brønsted acids and ...
In the year 2000, Accounts of Chemical Research published a landmark special edition on the timely s...
We report the synthesis and reactivity of a chiral aminoborane displaying both rapid and reversible ...
The activation of olefins for asymmetric chemical synthesis traditionally relies on transition metal...
The main objective of this thesis is to design and synthesize chiral Brønsted acids capable of catal...
The development of Brønsted acid catalyzed asymmetric hydrofunctionalizations of unbiased olefins is...
The application of chiral sulfinamides and achiral sulfonic acids as a co-catalyst system for enanti...
We elucidate the stereo-controlling factors of the asymmetric intramolecular hydroalkoxylation of te...
Metal-catalyzed catalytic asymmetric reactions have gained enormous attentions and the utilities of ...
Metal-catalyzed catalytic asymmetric reactions have gained enormous attentions and the utilities of ...
The electrophilic activation of a substrate by means of a Br\uf8nsted acid is, undoubtedly, the most...
The focus of this research project lies in the development of new methodology in the field of Brønst...
This thesis describes studies on non-classical carbocations and enols in asymmetric catalysis. In th...
Rh-catalyzed asymmetric hydrogenation has emerged as a powerful tool for the manufacturing of chiral...
The catalytic asymmetric hydrogenation (CAH) reaction is a preeminent tool for the generation of ste...
This work focuses on the conceptual development of highly confined, super acidic Brønsted acids and ...
In the year 2000, Accounts of Chemical Research published a landmark special edition on the timely s...
We report the synthesis and reactivity of a chiral aminoborane displaying both rapid and reversible ...
The activation of olefins for asymmetric chemical synthesis traditionally relies on transition metal...
The main objective of this thesis is to design and synthesize chiral Brønsted acids capable of catal...
The development of Brønsted acid catalyzed asymmetric hydrofunctionalizations of unbiased olefins is...
The application of chiral sulfinamides and achiral sulfonic acids as a co-catalyst system for enanti...
We elucidate the stereo-controlling factors of the asymmetric intramolecular hydroalkoxylation of te...
Metal-catalyzed catalytic asymmetric reactions have gained enormous attentions and the utilities of ...
Metal-catalyzed catalytic asymmetric reactions have gained enormous attentions and the utilities of ...
The electrophilic activation of a substrate by means of a Br\uf8nsted acid is, undoubtedly, the most...
The focus of this research project lies in the development of new methodology in the field of Brønst...
This thesis describes studies on non-classical carbocations and enols in asymmetric catalysis. In th...
Rh-catalyzed asymmetric hydrogenation has emerged as a powerful tool for the manufacturing of chiral...
The catalytic asymmetric hydrogenation (CAH) reaction is a preeminent tool for the generation of ste...
This work focuses on the conceptual development of highly confined, super acidic Brønsted acids and ...
In the year 2000, Accounts of Chemical Research published a landmark special edition on the timely s...
We report the synthesis and reactivity of a chiral aminoborane displaying both rapid and reversible ...