Linear carbon-carbon chains with alternating hydroxyl and methyl substituents are a common motif in various natural products. Many of these so-called polypropionates show biological activity and are useful in the fields of medicine and agriculture. The stereoselective synthesis of polypropionates has been extensively investigated and numerous strategies and tactics have been developed. The sequential aldol reactions of thiopyran derivatives 122 and 125 followed by desulfurization of aldol adducts is a strategy to rapidly construct hexapropionate synthons (e.g. 165). The present work concerns the control of the stereoselectivity in the two key aldol coupling steps inherent in this strategy. In Section 2.2, the influence of reaction conditi...
Simultaneous control over the configuration of multiple stereocenters is accomplished by numerous ca...
Aqueous 2,2-dimethoxyacetaldehyde (60% wt solution) is used as an acceptor in aldol reactions, with ...
Aldol reactions are one of the most powerful reactions in organic chemistry because of the formation...
Linear carbon-carbon chains with alternating hydroxyl and methyl substituents are a common motif in ...
Undoubtedly, stereoselective aldol coupling is one of the most powerful tools available for syntheti...
The sequential aldol reactions of thiopyran derivatives 112 and 119 to rapidly generate hexapropiona...
Polypropionates represent a large family of natural products and several strategies have been develo...
In the Ward Group, stereoselective aldol reactions of thiopyran derived templates play an important ...
The fundamental role that aldol chemistry adopts in various disciplines, such as stereoselective cat...
A simple synthetic methodology for the preparation of a polystyrene- supported L-proline material is...
The thiopyran route to polypropionates is an attractive strategy that involves a stepwise iterative ...
A mannitol derived 2,3-butanediacetal ethyl ketone displays high levels of diastereoselectivity in b...
Organocatalysis is an expanding research area in the field of asymmetric synthesis. Since small orga...
The organocatalytic activities of highly substituted proline esters obtained through asymmetric [3+2...
Dioxanones (1) are ketal- or acetal protected forms of 1,3-dihydroxyacetone (DHA). The thesis presen...
Simultaneous control over the configuration of multiple stereocenters is accomplished by numerous ca...
Aqueous 2,2-dimethoxyacetaldehyde (60% wt solution) is used as an acceptor in aldol reactions, with ...
Aldol reactions are one of the most powerful reactions in organic chemistry because of the formation...
Linear carbon-carbon chains with alternating hydroxyl and methyl substituents are a common motif in ...
Undoubtedly, stereoselective aldol coupling is one of the most powerful tools available for syntheti...
The sequential aldol reactions of thiopyran derivatives 112 and 119 to rapidly generate hexapropiona...
Polypropionates represent a large family of natural products and several strategies have been develo...
In the Ward Group, stereoselective aldol reactions of thiopyran derived templates play an important ...
The fundamental role that aldol chemistry adopts in various disciplines, such as stereoselective cat...
A simple synthetic methodology for the preparation of a polystyrene- supported L-proline material is...
The thiopyran route to polypropionates is an attractive strategy that involves a stepwise iterative ...
A mannitol derived 2,3-butanediacetal ethyl ketone displays high levels of diastereoselectivity in b...
Organocatalysis is an expanding research area in the field of asymmetric synthesis. Since small orga...
The organocatalytic activities of highly substituted proline esters obtained through asymmetric [3+2...
Dioxanones (1) are ketal- or acetal protected forms of 1,3-dihydroxyacetone (DHA). The thesis presen...
Simultaneous control over the configuration of multiple stereocenters is accomplished by numerous ca...
Aqueous 2,2-dimethoxyacetaldehyde (60% wt solution) is used as an acceptor in aldol reactions, with ...
Aldol reactions are one of the most powerful reactions in organic chemistry because of the formation...