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Dive into the research topics where Dipak D. Vachhani is active.

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Featured researches published by Dipak D. Vachhani.


Angewandte Chemie | 2012

A Diversity‐Oriented Approach to Spiroindolines: Post‐Ugi Gold‐Catalyzed Diastereoselective Domino Cyclization

Sachin G. Modha; Amit Kumar; Dipak D. Vachhani; Jeroen Jacobs; Sunil K. Sharma; Virinder S. Parmar; Luc Van Meervelt; Erik V. Van der Eycken

Gold-catalyzed carbocyclization and heteroannulation strategies have recently attracted much attention owing to the selective and efficient activation of the C C bond towards a wide range of nucleophiles that these methods provide. Domino approaches involving gold-catalysis lead to complex heterocyclic compounds under exceedingly mild reaction conditions. Although gold-catalyzed approaches are rising to prominence, they suffer in terms of diversity and procedural length. Multistep sequences are usually required for assembling the starting material for cyclization. We have recently reported a concise route to indoloazocines by a sequential Ugi/gold-catalyzed intramolecular hydroarylation approach. Inspired by these findings and as a result of our continued synthetic interest in the indole core, multicomponent reactions and transition metal-catalysis, we have developed a post-Ugi gold-catalyzed domino cyclization method to generate spiroindolines. The Ugi four-component reaction (4-CR) of indole-3carboxaldehyde (1a) with p-methoxybenzyl amine (2a), 2-butynoic acid (3a) and tert-butyl isonitrile (4a) in methanol at 50 8C gave Ugi-adduct 5a in 71% yield. When this was treated with 5 mol% of Au[PPh3]OTf (OTf= trifluoromethanesulfonate) in CDCl3 at RT, the expected outcome of the reaction was indoloazepinone 6a’ through an endo-dig cyclization followed by rearrangement (Scheme 1). Surprisingly, an exo-dig cyclization followed by intramolecular trapping of the spiro intermediate occurred instead, resulting in the diastereoselective formation of tetracyclic spiroindoline 6a in 61% yield (Scheme 1). This observation was remarkable, as the attack on the a-position of an alkyne conjugated with an amide is rare, and trapping of the spiro intermediate by a sterically hindered tert-butyl amide is rather unexpected, as was the diastereoselectivity observed. Spiroindolines are prominent molecular motifs that are frequently encountered among the large family of alkaloids; for example, it is present in communesines and perophoramidines (Figure 1), which display distinct pharmacological properties. These fused polycyclic systems, which feature quaternary stereocenters, present a nontrivial challenge for organic chemists to develop synthetic approaches.


Chemical Communications | 2012

Gold(I) and platinum(II) switch: a post-Ugi intramolecular hydroarylation to pyrrolopyridinones and pyrroloazepinones.

Sachin G. Modha; Amit Kumar; Dipak D. Vachhani; Sunil K. Sharma; Virinder S. Parmar; Erik V. Van der Eycken

A regioselective approach for the synthesis of pyrrolopyridinones and pyrroloazepinones is reported employing an Ugi reaction followed by a gold(I) or platinum(II) catalyzed intramolecular hydroarylation.


Beilstein Journal of Organic Chemistry | 2013

Post-Ugi gold-catalyzed diastereoselective domino cyclization for the synthesis of diversely substituted spiroindolines

Amit Kumar; Dipak D. Vachhani; Sachin G. Modha; Sunil K. Sharma; Virinder S. Parmar; Erik V. Van der Eycken

Summary An Ugi four-component reaction of propargylamine with 3-formylindole and various acids and isonitriles produces adducts which are subjected to a cationic gold-catalyzed diastereoselective domino cyclization to furnish diversely substituted spiroindolines. All the reactions run via an exo-dig attack in the hydroarylation step followed by an intramolecular diastereoselective trapping of the imminium ion. The whole sequence is atom economic and the application of a multicomponent reaction assures diversity.


Chemical Society Reviews | 2015

Metal-mediated post-Ugi transformations for the construction of diverse heterocyclic scaffolds

Upendra K. Sharma; Nandini Sharma; Dipak D. Vachhani; Erik V. Van der Eycken


Chemical Communications | 2013

Synthesis of (spiro)cyclopentapyridinones via Csp3–H functionalization: a post-Ugi gold-catalyzed regioselective tandem cyclization

Dipak D. Vachhani; Marzia Galli; Jeroen Jacobs; Luc Van Meervelt; Erik V. Van der Eycken


Chemical Communications | 2015

Domino Heck/borylation sequence towards indolinone-3-methyl boronic esters: trapping of the σ-alkylpalladium intermediate with boron

Dipak D. Vachhani; Himanshu H. Butani; Nandini Sharma; U. C. Bhoya; Anamik Shah; Erik V. Van der Eycken


European Journal of Organic Chemistry | 2013

Diversely Substituted Triazolo[1,5-a][1,4]benzodiazepinones: A Post-Ugi Copper-Catalyzed Tandem Azide–Alkyne Cycloaddition/Ullmann C–N Coupling Approach

Dipak D. Vachhani; Amit Kumar; Sachin G. Modha; Sunil K. Sharma; Virinder S. Parmar; Erik V. Van der Eycken


Advanced Synthesis & Catalysis | 2012

Microwave-Assisted Synthesis of Pyrazino[2,1-b]quinazolines and 3-Indolyl-2(1H)-pyrazinones Employing a Chemoselective Silver(I)- and Gold(I)-Catalyzed Reaction

Dipak D. Vachhani; Vaibhav P. Mehta; Sachin G. Modha; Kristof Van Hecke; Luc VanMeervelt; Erik Van der Eycken


European Journal of Organic Chemistry | 2013

Gold(I)‐Catalyzed Post‐Ugi Hydroarylation: An Approach to Pyrrolopyridines and Azepinoindoles

Amit Kumar; Dipak D. Vachhani; Sachin G. Modha; Sunil K. Sharma; Virinder S. Parmar; Erik V. Van der Eycken


Synthesis | 2013

Post Ugi Gold(I)- and Platinum(II)-Catalyzed Alkyne Activation: Synthesis of Diversely Substituted Fused Azepinones and Pyridinones

Amit Kumar; Dipak D. Vachhani; Sachin G. Modha; Sunil K. Sharma; Virinder S. Parmar; Erik V. Van der Eycken

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Erik V. Van der Eycken

Katholieke Universiteit Leuven

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Sachin G. Modha

Katholieke Universiteit Leuven

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Himanshu H. Butani

Katholieke Universiteit Leuven

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Jeroen Jacobs

Katholieke Universiteit Leuven

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Luc Van Meervelt

Katholieke Universiteit Leuven

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