Producción Científica Profesorado

Synthesis and Catalytic Applications of Multinuclear Gold(I)-1,2,3-Triazolylidene Complexes



Alvarez Hernandez, Alejandro

2021

David Rendón-Nava, Alejandro Álvarez-Hernández, Daniel Mendoza-Espinosa. Synthesis and Catalytic Applications of Multinuclear Gold(I)-1,2,3-Triazolylidene Complexes. 2021, 840-847.https://doi.org/10.1002/ejic.202001022


Abstract


A series of mono? to trinuclear gold(I) complexes (1?3) supported by oxo?functionalized 1,2,3?triazolylidenes have been prepared. All new compounds were fully characterized by means of 1H and 13C NMR spectroscopy, elemental analyses, and in the case of complexes 1 and 2 by x?ray diffraction. The catalytic performance of the new triazolylidene gold complexes was tested in several hydroelementation and cyclization processes employing a variety of alkynes as starting materials. According to the overall results, the trinuclear complex 3 displayed the highest catalytic activity in all processes, providing good to excellent yields under mild reaction conditions.



Producto de Investigación




Artículos relacionados

An efficient potassium cyanide-promoted synthesis of 2-arylbenzoxazoles from [4.3.0]boron heterobicy...

Stereoselective addition of allylmagnesium chloride to the CN bond of [4.3.0] boron heterobicycles

3-Benzoyl-2-isopropyl-4-alkyloxazolidin-5-ones as Efficient and Inexpensive Sources of Enantiopure ?...

Enantioselective synthesis of ?-amino acids. Part 10: Preparation of novel ?,?- and ?,?-disubstitute...

Et3B, an Efficient Mediator for Xanthate Transfer Based Radical Processes

Et3, and efficient Mediator for Xanthate Transfer Based Radical Processes.

Structure-Activity Relationships for Inhibition of Cysteine Protease Activity and Development of Pla...

New boronates prepared from 2,4-pentanedione derived ligands of the NO2 and N2O2 type comparison to...

Synthesis of New Chiral Derivatives of N,N?-Dimethylpropyleneurea (DMPU) and Examination of Their In...

A flexible access to highly functionalised boronates