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February 28, 2026Current Organic Chemistry0 citations

Utility of Palladium as a Catalyst for the Synthesis of Five and Six-Membered Heterocyclic Moieties

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SSShuchita SinghRKRajnish KumarSTShrishti Tripathi

Key Points

  • This research aims to explore the utility of palladium as a catalyst in synthesizing five and six-membered heterocyclic compounds.
  • Review of recent methods utilizing palladium as a catalyst for heterocyclic synthesis
  • Analysis of palladium-catalyzed C-C and C-N cross-coupling reactions
  • Evaluation of cyclization techniques in heterocyclic moieties
  • Palladium effectively enhances stereoselectivity and regioselectivity in synthesis
  • Recent advancements show diverse applications in developing pharmacologically active compounds
  • Palladium-catalyzed reactions revealed high efficiency in obtaining desired molecular structures

Abstract

Abstract: Heterocyclic chemistry is crucial, representing approximately fifty percent of all established organic compounds. Five and six-membered heterocyclic moieties such as pyrrole, thiazole, imidazole, oxadiazole, pyridine, piperazine, and pyrimidine have been reported with a wide range of pharmacological activities. In modern chemistry, palladiumcatalyzed reactions have emerged as a powerful tool for synthesizing different heterocyclic moieties, as they provide high stereoselectivity and regioselectivity. Palladium is an effective, environmentally friendly, and cost-effective metal with diverse scopes in organic synthesis. It offers efficient and precise methods for developing diverse molecular structures and potential drug molecules. Palladium-catalyzed reactions comprised C-C cross-coupling, C-N cross-coupling, C-H activation, cyclization, etc. The present manuscript provides insights into recently reported methods for the synthesis of 5 and 6-membered heterocyclic moieties where palladium was utilized as a catalyst.

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Cite This Study

Singh et al. (2026) studied this question.

synapsesocial.com/papers/69a2877b0a974eb0d3c033f9https://doi.org/10.2174/0113852728404183251203015241
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