Water-Soluble Gold(I) and Gold(III) Complexes with Sulfonated N‑Heterocyclic Carbene Ligands: Synthesis, Characterization, and Application in the Catalytic Cycloisomerization of γ‑Alkynoic Acids into Enol-Lactones
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https://figshare.com/articles/dataset/Water_Soluble_Gold_I_and_Gold_III_Complexes_with_Sulfonated_i_N_i_Heterocyclic_Carbene_Ligands_Synthesis_Characterization_and_Application_in_the_Catalytic_Cycloisomerization_of_Alkynoic_Acids_into_Enol_Lactones/2345746
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Zwitterionic imidazolium salts bearing 3-sulfonatopropyl, and 2-pyridyl, 2-picolyl, and 2-pyridylethyl substituents have been synthesized and employed as precursors for the preparation of novel water-soluble Au(I)- and Au(III)-NHC complexes of general composition [AuCl(NHC)] and [AuCl3(NHC)] (NHC = N-heterocyclic carbene), respectively. These complexes proved to be active, selective, and recyclable catalysts for the intramolecular cyclization of γ-alkynoic acids under biphasic toluene/water conditions, leading to the desired enol-lactones in high yields under mild conditions (r.t.). Remarkably, despite the well-known ability of gold complexes to promote the hydration of CC bonds, the competitive hydration process was not observed, even during the cycloisomerization reactions of 1,6-diynes.
创建时间:
2016-02-18



