In solution the PCy3/B(C6F5)3 pair is rapidly deactivated by nucleophilic aromatic substitution. In the solid state deactivation is effectively suppressed and the active frustrated phosphane/borane Lewis pair splits dihydrogen or adds to sulfur dioxide. A variety of phosphane/B(C6F5)3 pairs have been used to carry out active FLP reactions in the solid state. The reactions were analyzed by DFT calculations and by solid state NMR spectroscopy. The solid state dihydrogen splitting reaction was also carried out under near to ambient conditions with suspensions of the non-quenched phosphane/borane mixtures in the fluorous liquid perfluoromethylcyclohexane.ISSN:2041-6520ISSN:2041-653
The tetramethylene-bridged PMes<sub>2</sub>/B(C<sub>6</sub>F<sub>5</sub>)<sub>2</sub> frustrated Le...
Recently, the concept of small molecule activation by frustrated Lewis pairs (FLPs) has been expande...
Since the inception of frustrated Lewis pair (FLP) chemistry more than a decade ago, the development...
Diphenylphosphanylethyne (<b>3a</b>) reacts with tris(pentafluorophenyl)borane at room temperature...
Mechanisms of reactions of the frustrated Lewis pairs (FLPs) with carbon dioxide (CO2) and hydrogen ...
B(C6F5)3 and P(MeNCH2CH2)3N form a classical Lewis adduct, (C6F5)3BP(MeNCH2CH2)3N. Although the addu...
Diphenylphosphanylethyne (<b>3a</b>) reacts with tris(pentafluorophenyl)borane at room temperature...
Catalytic transformations are of utmost importance for the synthesis of goods and materials. Transi...
B(C6F5)3 and P(MeNCH2CH2)3N form a classical Lewis adduct, (C6F5)3BP(MeNCH2CH2)3N. Although the addu...
Catalytic transformations are of utmost importance for the synthesis of goods and materials. Transi...
The origin of the stability of a frustrated Lewis pair (FLP) tBu(3)P:B-(C6F5)(3) is investigated com...
The definition of frustrated Lewis pairs has been broadened from combinations of sterically encumber...
Proton-detected solid-state NMR enables atomic-level insight in solid-state reactions, for instance ...
The reactivity of a series of silylium ion/phosphane Lewis pairs was studied. Triarylsilylium borate...
The tetramethylene-bridged PMes<sub>2</sub>/B(C<sub>6</sub>F<sub>5</sub>)<sub>2</sub> frustrated Le...
The tetramethylene-bridged PMes<sub>2</sub>/B(C<sub>6</sub>F<sub>5</sub>)<sub>2</sub> frustrated Le...
Recently, the concept of small molecule activation by frustrated Lewis pairs (FLPs) has been expande...
Since the inception of frustrated Lewis pair (FLP) chemistry more than a decade ago, the development...
Diphenylphosphanylethyne (<b>3a</b>) reacts with tris(pentafluorophenyl)borane at room temperature...
Mechanisms of reactions of the frustrated Lewis pairs (FLPs) with carbon dioxide (CO2) and hydrogen ...
B(C6F5)3 and P(MeNCH2CH2)3N form a classical Lewis adduct, (C6F5)3BP(MeNCH2CH2)3N. Although the addu...
Diphenylphosphanylethyne (<b>3a</b>) reacts with tris(pentafluorophenyl)borane at room temperature...
Catalytic transformations are of utmost importance for the synthesis of goods and materials. Transi...
B(C6F5)3 and P(MeNCH2CH2)3N form a classical Lewis adduct, (C6F5)3BP(MeNCH2CH2)3N. Although the addu...
Catalytic transformations are of utmost importance for the synthesis of goods and materials. Transi...
The origin of the stability of a frustrated Lewis pair (FLP) tBu(3)P:B-(C6F5)(3) is investigated com...
The definition of frustrated Lewis pairs has been broadened from combinations of sterically encumber...
Proton-detected solid-state NMR enables atomic-level insight in solid-state reactions, for instance ...
The reactivity of a series of silylium ion/phosphane Lewis pairs was studied. Triarylsilylium borate...
The tetramethylene-bridged PMes<sub>2</sub>/B(C<sub>6</sub>F<sub>5</sub>)<sub>2</sub> frustrated Le...
The tetramethylene-bridged PMes<sub>2</sub>/B(C<sub>6</sub>F<sub>5</sub>)<sub>2</sub> frustrated Le...
Recently, the concept of small molecule activation by frustrated Lewis pairs (FLPs) has been expande...
Since the inception of frustrated Lewis pair (FLP) chemistry more than a decade ago, the development...