Publications by authors named "Susana Porcel"

We describe herein a gold-catalyzed three-component reaction of -alkynylbenzaldehydes, aryldiazonium salts, and trimethoxybenzene. This process enables the one-pot formation of valuable isoindoles and 1,2-dihydrophathalazines. The regioselectivity of the reaction is dictated by the nature of the aryldiazonium salt.

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Article Synopsis
  • - The text discusses a new method for synthesizing 3-acylindoles and Z-3-(chloromethylene)indolines through a one-pot reaction involving diazotization and gold-mediated cyclization of specific compounds.
  • - The reaction involves using Me SAuCl to facilitate the oxy- and/or chloroarylation of an alkyne, leading to the desired products.
  • - DFT calculations indicate that these reaction pathways are energetically favored compared to alternative methods, and a particular Z-3-(chloromethylene)indoline was observed to crystallize with a unique gold-chloride complex, showing close interactions between gold and hydrogen atoms.
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In the last decade, aryldiazonium salts have attracted interest as coupling partners in cross-coupling reactions mediated by gold. Initially, the presence of a photocatalyst and a light source was needed to achieve gold oxidation with these electrophiles. However, recently, it has been shown that in some instances just heating, light irradiation, or the addition of certain bases and/or nucleophiles is enough.

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Article Synopsis
  • Recent research has focused on developing protocols to facilitate the oxidative addition of gold, leading to milder cross-coupling processes.
  • Ascorbic acid, a natural antioxidant, effectively accelerates the oxidative addition of aryldiazonium chlorides to gold, allowing for the creation of aryl-Au species.
  • This method has been used to synthesize 3-arylindoles in a one-pot reaction from anilines and various aryldiazonium chlorides, with detailed analysis of the mechanism involved.
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Alkynoic acids derived from salicylic acid and analogues undergo arylative cyclization with arenediazonium salts promoted by gold in the absence of external ligands. The reaction is thermally induced and proceeds even in the absence of light. A difference in regioselectivity has been found compared with that observed in the cycloisomerization process of the same type of compounds.

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Arenediazonium salts generated in situ from anilines have been found for the first time to efficiently oxidize [AuCl(L)] (L = SMe2, PPh3) complexes in DMSO as a solvent, under thermal conditions. The structure of the [AuArCl2(L)] complexes formed has been confirmed by X-ray diffraction analyses. These complexes have been used as intermediates, in a one pot cross-coupling reaction of anilines with silver acetylides.

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Alkenoic acids derived from salicylic acid and analogues undergo an unexpected oxidative cyclization process triggered by AgOAc leading to 4H-benzo[d][1,3]dioxin-4-ones. The process is affected by the substitution on the aryl and the allyl units.

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Phosphine-boronates R(2)P(o-C(6)H(4))B(OR')(2) have been evaluated as bifunctional organocatalysts for the Michael addition of malonate pronucleophiles to methylvinylketone. The presence of the Lewis acidic boron center adjacent to phosphorus significantly improves catalytic performance. Isolation and complete characterization of a key intermediate, namely a β-phosphonium enolate, substantiate the role of the Lewis acidic moiety in the catalytic process.

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Oxidative cleavage with lead tetraacetate results in the synthesis of different oxygen heterocycles starting from the same unsaturated 1,2-diol of type I by tuning of the substitution pattern at the angular position. When this compound bears a functional substituent, such as an alkoxy, ester, alkenyl, or simply a hydrogen, more than one reaction pathway are in competition. The process allows for the selective formation of three different complex ring systems, by the appropriate choice of the angular substituent, leading to either a ring-expanded type 1, ring-retained type 2, or domino products 3.

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