School of Physical Sciences, Amrita Vishwa Vidyapeetham, Amritapuri Campus, Clappana P. O., Kollam, Kerala, 690525, India.
School of Chemical Sciences, Mahatma Gandhi University, Priyadarsini Hills P. O., Kottayam, Kerala, 686560, India.
Top Curr Chem (Cham). 2024 Jan 24;382(1):3. doi: 10.1007/s41061-024-00449-w.
Amination reactions play a pivotal role in synthetic organic chemistry, facilitating the generation of nitrogen-containing scaffolds with broad applications in drug synthesis, material production, polymer formation, and the generation of amino acids and peptides. Amination offers the potential to fine tune the properties of natural products and produce functional materials for various applications. Palladium N-heterocyclic carbene (Pd-NHC) emerges as an innovative and highly effective catalyst in this context. Under favorable reaction conditions, this robust and simple catalyst efficiently facilitates the synthesis of a diverse range of compounds with varying complexity and utility. Pd-NHC complexes exhibit significant σ-electron donating potential, enhancing the ease of the oxidative addition process in their mechanistic pathway. Their steric topography further contributes to a rapid reductive elimination. These complexes demonstrate remarkable stability, a result of the strong Pd-ligand bond. The wide variety of Pd-NHC complexes has proven highly efficient in catalyzing reactions across a spectrum of complexities, from simple to intricate. The domain of aminations catalyzed by Pd-NHC has undergone significant diversification, presenting new opportunities, particularly in the realms of material chemistry and natural product synthesis. This review outlines the advancements in Pd-NHC-catalyzed amination reactions, covering literature up to date.
胺化反应在合成有机化学中起着关键作用,它能够生成含氮骨架,这些骨架在药物合成、材料生产、聚合物形成以及氨基酸和肽的生成中具有广泛的应用。胺化反应提供了微调天然产物性质和生成各种应用功能性材料的可能性。钯氮杂环卡宾(Pd-NHC)在这种情况下成为一种创新且高效的催化剂。在有利的反应条件下,这种坚固而简单的催化剂能够高效地促进具有不同复杂程度和用途的各种化合物的合成。Pd-NHC 配合物具有显著的σ-电子供体潜能,增强了其在机理途径中氧化加成过程的容易程度。它们的空间拓扑结构进一步促进了快速的还原消除。这些配合物具有显著的稳定性,这是由于 Pd-配体键的强度。广泛的 Pd-NHC 配合物已被证明在催化从简单到复杂的各种反应中非常有效。Pd-NHC 催化的胺化反应领域已经发生了显著的多样化,为材料化学和天然产物合成等领域带来了新的机遇。本综述概述了截至目前为止 Pd-NHC 催化的胺化反应的进展。