ARTIKEL

Reactions of Gallaphosphaketenes with Silylenes: Formation of Gallaphosphenes versus Silaphosphenes

02.09.2025
Reactions of Gallaphosphaketenes with Silylenes: Formation of Gallaphosphenes versus Silaphosphenes

Gallaphosphaketene 1b reacts with silylenes either to silaphosphenes (2a/b, 4) or gallaphosphene 3. The nucleophilic character of the P atoms in 3 and 4 is proven in reactions with HCl, BnOH, MeI, MeOTf, and MeLi, respectively, demonstrating the promising potential of heavy π-bonded p-block element compounds for small molecule activation reactions.


Heavy main group element compounds with heteronuclear double bonds are of interest due to their fascinating reactivity. Herein, the synthesis of silaphosphenes L1Ga(X)PSiL2 (X = Cl 2a, Me 2b, L1 = [N(Dipp)C(Me)]2CH, Dipp = 2,6- i Pr2C6H3; L2 = PhC(N t Bu)2) and L1Ga(Cl)PSiL4 4 (L4 = [N(Dipp)C(Me)]2) is reported, which are obtained from reactions of gallaphosphaketenes L1Ga(X)PCO (X = Cl 1a, Me 1b) with silylenes L2SiCl and the N-heterocyclic silylene L4Si, respectively. In contrast, gallaphosphene L1GaPSi(Cl)L3 3 (L3 = DippNC(CH3)CHC(CH2)NDipp) formed in the reaction of 1a with the β-diketiminate-substituted silylene L3Si. Silaphosphenes 2a and 4 and gallaphosphene 3 are promising reagents for reactions with nucleophiles and electrophiles as is exemplarily demonstrated with HCl, MeI, MeOTf, MeLi, BnOH, BnNC, and CO2, respectively.

Verwandte Artikel

Reactions of Gallaphosphaketenes with Silylenes: Formation of Gallaphosphenes versus Silaphosphenes
Structural and Molecular Basis of Zinc‐Induced Primary Nucleation of Polymorphic Amyloid‐β Dimers
Reactions of Gallaphosphaketenes with Silylenes: Formation of Gallaphosphenes versus Silaphosphenes
Platinum‐Binding Peptides: Binding Kinetics, Affinities, and Facet‐Specific Conformational Adaptation
Reactions of Gallaphosphaketenes with Silylenes: Formation of Gallaphosphenes versus Silaphosphenes
Modulating the Crystal Structure of Crown Ether‐Appended Tetraazanaphthacenes by Formations of Metal Ion Complex and Their Radical Anion Species
Reactions of Gallaphosphaketenes with Silylenes: Formation of Gallaphosphenes versus Silaphosphenes
A Cluster‐Based Model of Anionic Frameworks for Evaluating Lithium Conductivity in Sulfide Solid‐State Electrolytes
Reactions of Gallaphosphaketenes with Silylenes: Formation of Gallaphosphenes versus Silaphosphenes
The Elusive Chemistry of Pyrroloquinoline Quinone Dimethyl Ester Lanthanide Complexes in Biomimetic Alcohol Oxidation