The olefin cross-metathesis reaction provides a rapid and efficient method for the synthesis of α,β-unsaturated 1,5-dicarbonyl derivatives which then serve as effective precursors to mono-tetrasubstituted pyridines. Manipulation of the key 1,5-dicarbonyl intermediate allows access to pyridines with a wide range of substitution patterns. An extension of this methodology facilitates the preparation of pyridines embedded within macrocycles, as exemplified by an efficient synthesis of (R)-(+)-muscopyridine. High levels of regiocontrol, short reaction sequences, and facile substituent variation are all notable aspects of this methodology
RCM can be used to make aromatic heterocycles, namely pyridines and, for the first time, pyridazines...
Pyridine rings are common structural motifs found in a number of biologically active compounds, incl...
International audiencePyridines carrying heterosubstituents (such as carboxy, amido, amino, alkoxy o...
The olefin cross-metathesis reaction provides a rapid and efficient method for the synthesis of α,β-...
The olefin metathesis reaction has underpinned spectacular achievements in organic synthesis in rece...
The olefin metathesis reaction is a well established and powerful method for the synthesis of alkene...
Ring-closing olefin metathesis (RCM) has been applied to the efficient synthesis of densely and dive...
Ring-closing olefin metathesis (RCM) has been applied to the efficient synthesis of densely and dive...
Ring-closing metathesis (RCM) is a useful protocol for assembling macrocycles. To synthesize normusc...
The ring-closing metathesis reaction has been successfully employed to form a range of dihydropyrido...
Heck reactions were performed on α,β-unsaturated-δ-sulfonamido intermediates, derived from cross met...
The pyridine heterocycle continues to play a vital role in the development of human medicines. More ...
The pyridine heterocycle continues to play a vital role in the development of human medicines. More ...
The pyridine heterocycle continues to play a vital role in the development of human medicines. More ...
Olefin metathesis has been established as an important and general reaction in synthetic organic che...
RCM can be used to make aromatic heterocycles, namely pyridines and, for the first time, pyridazines...
Pyridine rings are common structural motifs found in a number of biologically active compounds, incl...
International audiencePyridines carrying heterosubstituents (such as carboxy, amido, amino, alkoxy o...
The olefin cross-metathesis reaction provides a rapid and efficient method for the synthesis of α,β-...
The olefin metathesis reaction has underpinned spectacular achievements in organic synthesis in rece...
The olefin metathesis reaction is a well established and powerful method for the synthesis of alkene...
Ring-closing olefin metathesis (RCM) has been applied to the efficient synthesis of densely and dive...
Ring-closing olefin metathesis (RCM) has been applied to the efficient synthesis of densely and dive...
Ring-closing metathesis (RCM) is a useful protocol for assembling macrocycles. To synthesize normusc...
The ring-closing metathesis reaction has been successfully employed to form a range of dihydropyrido...
Heck reactions were performed on α,β-unsaturated-δ-sulfonamido intermediates, derived from cross met...
The pyridine heterocycle continues to play a vital role in the development of human medicines. More ...
The pyridine heterocycle continues to play a vital role in the development of human medicines. More ...
The pyridine heterocycle continues to play a vital role in the development of human medicines. More ...
Olefin metathesis has been established as an important and general reaction in synthetic organic che...
RCM can be used to make aromatic heterocycles, namely pyridines and, for the first time, pyridazines...
Pyridine rings are common structural motifs found in a number of biologically active compounds, incl...
International audiencePyridines carrying heterosubstituents (such as carboxy, amido, amino, alkoxy o...