The synthesis and structural characterization of a phenylene-bridged Frustrated Lewis Pair (FLP) having a 2,2,6,6‑tetramethylpiperidine (TMP) as the Lewis base and a 9-borabicyclo[3.3.1]nonane (BBN) as the Lewis acid is reported. This FLP exhibits unique robustness towards the products of carbon dioxide hydrogenation. The compound shows reversible splitting of water, formic acid and methanol while no reaction is observed in the presence of excess formaldehyde. The molecule is incredibly robust, showing little sign of degradation after heating at 80 °C in benzene with 10 equiv. of formic acid for 24 h. The robustness of the system could be exploited in the design of metal-free catalysts for the hydrogenation of carbon dioxide
This chapter reviews the published work to date on the interaction of CO2 and CO with frustrated Lew...
Non-transition metal catalytic systems able to activate hydrogen and other small molecules are focus...
The FLP species 1-BR2-2-NMe2-C6H4 (R = 2,4,6-Me3C6H21, 2,4,5-Me3C6H22) reacts with H2 in sequential ...
The synthesis and structural characterization of a phenylene-bridged Frustrated Lewis Pair (FLP) hav...
The synthesis and structural characterization of a phenylene-bridged Frustrated Lewis Pair (FLP) hav...
The synthesis and structural characterization of a phenylene-bridged Frustrated Lewis Pair (FLP) hav...
Despite recent progress in the chemistry of frustrated Lewis pairs (FLPs), direct FLP-catalyzed hydr...
The past decade has seen the emergence of a new concept in main-group chemistry: ‘frustrated Lewis p...
This account describes our work on the use of ambiphilic molecules as catalysts for the reduction o...
This account describes our work on the use of ambiphilic molecules as catalysts for the reduction of...
The goal of this research is to synthesize new bulky Lewis acid and base molecules and incorporate t...
The past decade has seen the subject of transition metal-free catalytic hydrogenation develop incred...
The development of a boron/nitrogen-centered frustrated Lewis pair (FLP) with remarkably high water ...
The FLP species 1-BR2-2-NMe2-C6H4 (R = 2,4,6-Me3C6H21, 2,4,5-Me3C6H22) reacts with H2 in sequential ...
The focus of this thesis has been the design and synthesis of new frustrated Lewis pair (FLP) system...
This chapter reviews the published work to date on the interaction of CO2 and CO with frustrated Lew...
Non-transition metal catalytic systems able to activate hydrogen and other small molecules are focus...
The FLP species 1-BR2-2-NMe2-C6H4 (R = 2,4,6-Me3C6H21, 2,4,5-Me3C6H22) reacts with H2 in sequential ...
The synthesis and structural characterization of a phenylene-bridged Frustrated Lewis Pair (FLP) hav...
The synthesis and structural characterization of a phenylene-bridged Frustrated Lewis Pair (FLP) hav...
The synthesis and structural characterization of a phenylene-bridged Frustrated Lewis Pair (FLP) hav...
Despite recent progress in the chemistry of frustrated Lewis pairs (FLPs), direct FLP-catalyzed hydr...
The past decade has seen the emergence of a new concept in main-group chemistry: ‘frustrated Lewis p...
This account describes our work on the use of ambiphilic molecules as catalysts for the reduction o...
This account describes our work on the use of ambiphilic molecules as catalysts for the reduction of...
The goal of this research is to synthesize new bulky Lewis acid and base molecules and incorporate t...
The past decade has seen the subject of transition metal-free catalytic hydrogenation develop incred...
The development of a boron/nitrogen-centered frustrated Lewis pair (FLP) with remarkably high water ...
The FLP species 1-BR2-2-NMe2-C6H4 (R = 2,4,6-Me3C6H21, 2,4,5-Me3C6H22) reacts with H2 in sequential ...
The focus of this thesis has been the design and synthesis of new frustrated Lewis pair (FLP) system...
This chapter reviews the published work to date on the interaction of CO2 and CO with frustrated Lew...
Non-transition metal catalytic systems able to activate hydrogen and other small molecules are focus...
The FLP species 1-BR2-2-NMe2-C6H4 (R = 2,4,6-Me3C6H21, 2,4,5-Me3C6H22) reacts with H2 in sequential ...