Herein we report the metal-free diastereoselective frustrated Lewis pair (FLP)-catalyzed hydrogenation of aza-Morita–Baylis–Hillman (aza-MBH) adducts, accessing a diverse range of stereodefined β-amino acid derivatives in excellent isolated yields (28 examples, 89% average yield, up to 90:10 d.r.). Furthermore, sequential organo-FLP catalysis has been developed. An initial organocatalyzed aza-MBH reaction followed by in situ FLP formation and hydrogenation of the electron-deficient α,β-unsaturated carbonyl compounds can be performed in one-pot, using DABCO as the Lewis base in both catalytic steps
Structural features and reactivity of frustrated Lewis pairs (FLPs) formed by pyramidal group 13 Lew...
The chemistry of ‘Frustrated Lewis Pairs’ (FLPs) has been the subject of intense investigation for o...
Catalytic hydrogenation is one of the most important reaction types commonly used in chemistry and c...
Herein we report the metal-free diastereoselective frustrated Lewis pair (FLP)-catalyzed hydrogenati...
Despite the rapid development of frustrated Lewis pair (FLP) chemistry over the last ten years, its ...
The literature part goes over the discovery of frustrated Lewis pairs, and their use in catalysis to...
Frustrated Lewis pairs are compounds containing both Lewis acidic and Lewis basic moieties, where th...
The development of a boron/nitrogen-centered frustrated Lewis pair (FLP) with remarkably high water ...
The past decade has seen the emergence of a new concept in main-group chemistry: ‘frustrated Lewis p...
The past decade has seen the subject of transition metal-free catalytic hydrogenation develop incred...
The formalisation of the concept of ‘frustrated Lewis pairs’ (FLPs), where bulky Lewis acids (LAs) a...
New main group systems that provide avenues for small molecule activation have been illustrated usin...
Frustrated Lewis pairs (FLPs) are powerful, typically nonmetal, Lewis acid/base combinations that ca...
AbstractThe activation of H2 for the catalytic hydrogenation of unsaturated compounds is one of the ...
Zirconium-based frustrated Lewis pairs (FLPs) are active imine hydrogenation catalysts under mild co...
Structural features and reactivity of frustrated Lewis pairs (FLPs) formed by pyramidal group 13 Lew...
The chemistry of ‘Frustrated Lewis Pairs’ (FLPs) has been the subject of intense investigation for o...
Catalytic hydrogenation is one of the most important reaction types commonly used in chemistry and c...
Herein we report the metal-free diastereoselective frustrated Lewis pair (FLP)-catalyzed hydrogenati...
Despite the rapid development of frustrated Lewis pair (FLP) chemistry over the last ten years, its ...
The literature part goes over the discovery of frustrated Lewis pairs, and their use in catalysis to...
Frustrated Lewis pairs are compounds containing both Lewis acidic and Lewis basic moieties, where th...
The development of a boron/nitrogen-centered frustrated Lewis pair (FLP) with remarkably high water ...
The past decade has seen the emergence of a new concept in main-group chemistry: ‘frustrated Lewis p...
The past decade has seen the subject of transition metal-free catalytic hydrogenation develop incred...
The formalisation of the concept of ‘frustrated Lewis pairs’ (FLPs), where bulky Lewis acids (LAs) a...
New main group systems that provide avenues for small molecule activation have been illustrated usin...
Frustrated Lewis pairs (FLPs) are powerful, typically nonmetal, Lewis acid/base combinations that ca...
AbstractThe activation of H2 for the catalytic hydrogenation of unsaturated compounds is one of the ...
Zirconium-based frustrated Lewis pairs (FLPs) are active imine hydrogenation catalysts under mild co...
Structural features and reactivity of frustrated Lewis pairs (FLPs) formed by pyramidal group 13 Lew...
The chemistry of ‘Frustrated Lewis Pairs’ (FLPs) has been the subject of intense investigation for o...
Catalytic hydrogenation is one of the most important reaction types commonly used in chemistry and c...