Javascript must be enabled to continue!
Advances in catalytic asymmetric hydrogenation of third-row heteroatom-substituted alkenes
View through CrossRef
The asymmetric hydrogenation of vinyl silanes, vinyl sulfides, vinyl phosphines, and vinyl chlorides, those substituted with heteroatoms from the third-row of the periodic table, has emerged as a valuable and environmentally friendly method for the construction of the related optically active organosilanes, organosulfides, organophosphine, and organochlorides. These compounds have shown considerable potential for preparing functional molecules and synthesizing natural products. Over the past few decades, considerable research efforts have focused on the design and development of transition-metal catalysts featuring chiral ligands for the asymmetric hydrogenation of such substrates. In parallel, in-depth mechanistic studies have been conducted to elucidate the pathways of these enantioselective hydrogenation reactions, significantly advancing the understanding of their catalytic behavior and stereocontrol. This review focuses on the recent momentum and key advancements in the enantioselective hydrogenation of vinyl silanes, vinyl sulfides, and vinyl chlorides. In addition, given the widespread industrial interest in these compounds, the practical utility of this transformation in the synthesis of chiral silanes, chiral thioethers, chiral alkyl chlorides, as well as related derivatives, is also discussed.
Title: Advances in catalytic asymmetric hydrogenation of third-row heteroatom-substituted alkenes
Description:
The asymmetric hydrogenation of vinyl silanes, vinyl sulfides, vinyl phosphines, and vinyl chlorides, those substituted with heteroatoms from the third-row of the periodic table, has emerged as a valuable and environmentally friendly method for the construction of the related optically active organosilanes, organosulfides, organophosphine, and organochlorides.
These compounds have shown considerable potential for preparing functional molecules and synthesizing natural products.
Over the past few decades, considerable research efforts have focused on the design and development of transition-metal catalysts featuring chiral ligands for the asymmetric hydrogenation of such substrates.
In parallel, in-depth mechanistic studies have been conducted to elucidate the pathways of these enantioselective hydrogenation reactions, significantly advancing the understanding of their catalytic behavior and stereocontrol.
This review focuses on the recent momentum and key advancements in the enantioselective hydrogenation of vinyl silanes, vinyl sulfides, and vinyl chlorides.
In addition, given the widespread industrial interest in these compounds, the practical utility of this transformation in the synthesis of chiral silanes, chiral thioethers, chiral alkyl chlorides, as well as related derivatives, is also discussed.
Related Results
Row Orientation and Planting Pattern of Relay Intercropped Soybean and Wheat
Row Orientation and Planting Pattern of Relay Intercropped Soybean and Wheat
Relay intercropping soybean [Glycine max(L.) Merr.] into winter wheat (Triticum aestivum L.) may increase soybean yields compared with doublecropping. Once the soybean crop is esta...
Evaluating Intercropping Limitations of Cowpea (Vignaunguiculata L.), Pearl Millet (Pennisetumglaucum L.), and Maize (Zea Mays L.)
Evaluating Intercropping Limitations of Cowpea (Vignaunguiculata L.), Pearl Millet (Pennisetumglaucum L.), and Maize (Zea Mays L.)
Fodder scarcity is a main problem in boosting of livestock sector. Hypothesis was made in order to increase fodder yield per unit of land by intercropping of cowpeas, pearl millet ...
Recent Developments in Transition-Metal-Catalyzed Asymmetric Hydrogenation of Enamides
Recent Developments in Transition-Metal-Catalyzed Asymmetric Hydrogenation of Enamides
AbstractThe catalytic asymmetric hydrogenation of prochiral olefins is one of the most widely studied and utilized transformations in asymmetric synthesis. This straightforward, at...
HYDROGENATION TECHNOLOGY AND CHEMISTRY OF COTTONSEED OIL AND FATS
HYDROGENATION TECHNOLOGY AND CHEMISTRY OF COTTONSEED OIL AND FATS
The presented research describes the hydrogenation technology and the chemistry of vegetable oils and fats using powder and stationary catalysts. The hydrogenation technology proce...
Catalytic Hydrogenation of Post-Mature Hydrocarbon Source Rocks Under Deep-Derived Fluids: An Example of Early Cambrian Yurtus Formation, Tarim Basin, NW China
Catalytic Hydrogenation of Post-Mature Hydrocarbon Source Rocks Under Deep-Derived Fluids: An Example of Early Cambrian Yurtus Formation, Tarim Basin, NW China
As a link between the internal and external basin, the deep derived fluids play a key role during the processes of hydrocarbon (HC) formation and accumulation in the form of organi...
Heteroatom‐Facilitated Lithiations
Heteroatom‐Facilitated Lithiations
Abstract
Some 25 years have elapsed since the topic of metalation reactions was reviewed by Gilman and Morton. The intervening years have been notable for in...
Continuous-Flow Hydrogenation of Nitroaromatics in Microreactor with Mesoporous Pd@SBA-15
Continuous-Flow Hydrogenation of Nitroaromatics in Microreactor with Mesoporous Pd@SBA-15
The hydrogenation of nitroaromatics to prepare aromatic amines plays a crucial role in the chemical industry. Traditional hydrogenation has the risk of hydrogen leakage from the eq...
Catalytic Hydrogenation of Epoxides to Alcohols
Catalytic Hydrogenation of Epoxides to Alcohols
AbstractAtom‐economical catalytic reactions are a highly enticing strategy because all atoms of the starting materials are incorporated into the products. Catalytic hydrogenation o...

