The unique chiral structure of DNA has been a source of inspiration for the development of a new class of bio-inspired catalysts. The novel concept of DNA-based asymmetric catalysis, which was introduced only five years ago, has been applied successfully in a variety of catalytic enantioselective reactions. In this tutorial review, the ideas behind this novel concept will be introduced, an overview of the catalytic chemistry available to date will be given and the role of DNA in catalysis will be discussed. Finally, an overview of new developments of potential interest for DNA-based asymmetric catalysis will be provided.</p
The recently developed concept of DNA-based asymmetric catalysis involves the transfer of chirality ...
A new approach to DNA-based asymmetric catalysis is presented, which gives rise to very high enantio...
A new approach to DNA-based asymmetric catalysis is presented, which gives rise to very high enantio...
The unique chiral structure of DNA has been a source of inspiration for the development of a new cla...
The unique chiral structure of DNA has been a source of inspiration for the development of a new cla...
The unique chiral structure of DNA has been a source of inspiration for the development of a new cla...
The unique chiral structure of DNA has been a source of inspiration for the development of a new cla...
The unique chiral structure of DNA has been a source of inspiration for the development of a new cla...
In the past decade, DNA-based hybrid catalysis has merged as a promising novel approach to homogeneo...
In the past decade, DNA-based hybrid catalysis has merged as a promising novel approach to homogeneo...
In the past decade, DNA-based hybrid catalysis has merged as a promising novel approach to homogeneo...
In the past decade, DNA-based hybrid catalysis has merged as a promising novel approach to homogeneo...
In the past decade, DNA-based hybrid catalysis has merged as a promising novel approach to homogeneo...
The goal of the research described in this thesis was to develop the general concept and methodology...
The biological importance of nucleic acids for the storage, expression and regulation of genetic inf...
The recently developed concept of DNA-based asymmetric catalysis involves the transfer of chirality ...
A new approach to DNA-based asymmetric catalysis is presented, which gives rise to very high enantio...
A new approach to DNA-based asymmetric catalysis is presented, which gives rise to very high enantio...
The unique chiral structure of DNA has been a source of inspiration for the development of a new cla...
The unique chiral structure of DNA has been a source of inspiration for the development of a new cla...
The unique chiral structure of DNA has been a source of inspiration for the development of a new cla...
The unique chiral structure of DNA has been a source of inspiration for the development of a new cla...
The unique chiral structure of DNA has been a source of inspiration for the development of a new cla...
In the past decade, DNA-based hybrid catalysis has merged as a promising novel approach to homogeneo...
In the past decade, DNA-based hybrid catalysis has merged as a promising novel approach to homogeneo...
In the past decade, DNA-based hybrid catalysis has merged as a promising novel approach to homogeneo...
In the past decade, DNA-based hybrid catalysis has merged as a promising novel approach to homogeneo...
In the past decade, DNA-based hybrid catalysis has merged as a promising novel approach to homogeneo...
The goal of the research described in this thesis was to develop the general concept and methodology...
The biological importance of nucleic acids for the storage, expression and regulation of genetic inf...
The recently developed concept of DNA-based asymmetric catalysis involves the transfer of chirality ...
A new approach to DNA-based asymmetric catalysis is presented, which gives rise to very high enantio...
A new approach to DNA-based asymmetric catalysis is presented, which gives rise to very high enantio...