Stereoretentive olefin metathesis based on ruthenium dithiolate complexes has become a very active field of research within the past years. This unique catalyst class is able to kinetically produce both Z- and E-alkenes in high stereochemical purity (typically >95:5) starting from stereochemically pure Z- or E-alkenes. The aim of this tutorial review is to organize the reported information concerning ruthenium dithiolate catalysts in a logic manner, thus providing an "operators handbook" for chemists who wish to apply this methodology in synthesis
This chapter contains sections titled: Highly active ruthenium (pre)catalysts for metathesis reactio...
Thesis advisor: Amir H. HoveydaChapter 1. Exploring Ligand Effects in Ruthenium Dithiolate Carbene C...
The selective transformation of 1-alkenes into E-olefins is a long-standing challenge in olefin meta...
Olefin metathesis is a prevailing method for the construction of organic molecules. Recent advanceme...
International audienceThe in situ preparation of highly stereoretentive ruthenium-based metathesis c...
A premier method for the formation of carbon-carbon double bonds, olefin metathesis has found widesp...
The in situ preparation of highly stereoretentive ruthenium-based metathesis catalysts is reported. ...
A comprehensive computational study of stereoretentive olefin metathesis with Ru-dithiolate catalyst...
International audienceA series of new stereoretentive ruthenium catalysts bearing the dithiocatechol...
ABSTRACT: There have been numerous significant advances in catalytic olefin metathesis (OM) during t...
Olefin metathesis is an incredibly valuable transformation that has gained widespread use in both ac...
A series of new stereoretentive ruthenium catalysts bearing the dithiocatecholate ligand was synthes...
As a guide for selective reactions toward either Z- or E-alkene in a metathesis reaction, the relati...
The recent development of a class of Z-selective ruthenium metathesis catalysts containing a crucial...
The past 5 years have witnessed an enormous growth in the field of Z-selective olefin metathesis. Th...
This chapter contains sections titled: Highly active ruthenium (pre)catalysts for metathesis reactio...
Thesis advisor: Amir H. HoveydaChapter 1. Exploring Ligand Effects in Ruthenium Dithiolate Carbene C...
The selective transformation of 1-alkenes into E-olefins is a long-standing challenge in olefin meta...
Olefin metathesis is a prevailing method for the construction of organic molecules. Recent advanceme...
International audienceThe in situ preparation of highly stereoretentive ruthenium-based metathesis c...
A premier method for the formation of carbon-carbon double bonds, olefin metathesis has found widesp...
The in situ preparation of highly stereoretentive ruthenium-based metathesis catalysts is reported. ...
A comprehensive computational study of stereoretentive olefin metathesis with Ru-dithiolate catalyst...
International audienceA series of new stereoretentive ruthenium catalysts bearing the dithiocatechol...
ABSTRACT: There have been numerous significant advances in catalytic olefin metathesis (OM) during t...
Olefin metathesis is an incredibly valuable transformation that has gained widespread use in both ac...
A series of new stereoretentive ruthenium catalysts bearing the dithiocatecholate ligand was synthes...
As a guide for selective reactions toward either Z- or E-alkene in a metathesis reaction, the relati...
The recent development of a class of Z-selective ruthenium metathesis catalysts containing a crucial...
The past 5 years have witnessed an enormous growth in the field of Z-selective olefin metathesis. Th...
This chapter contains sections titled: Highly active ruthenium (pre)catalysts for metathesis reactio...
Thesis advisor: Amir H. HoveydaChapter 1. Exploring Ligand Effects in Ruthenium Dithiolate Carbene C...
The selective transformation of 1-alkenes into E-olefins is a long-standing challenge in olefin meta...