化学
过渡金属
转化(遗传学)
组合化学
有机化学
催化作用
生物化学
基因
作者
Karthik Rajan Rajamanickam,Robin Prakash Sirvin Rajan,Nithin Pootheri,Chin‐Fa Lee,Sunwoo Lee
标识
DOI:10.1002/ejoc.202500210
摘要
Amides are fundamental functional groups in organic synthesis and play crucial roles in medicinal chemistry and material science. Traditionally, amide transformations have often relied on transition‐metal catalysts; however, recent advances have demonstrated efficient transition‐metal‐free strategies for amide bond activation. This review provides a comprehensive overview of emerging methodologies that enable selective formation of C–N, C–C, C–O, C–H, and C–X bonds. Key developments that offer sustainable and practical alternatives to conventional approaches include borate‐ and boronic acid‐mediated transamidations, phosphoric acid‐promoted transformations, and radical‐based strategies. Additionally, nucleophilic substitutions with carbon, oxygen, and nitrogen‐based nucleophiles have expanded the synthetic utility of amides by yielding diverse carbonyl and heterocyclic compounds. Mechanistic insights into these transformations reveal the role of electronic and steric effects in amide reactivity. By categorizing these methodologies based on amide substrates and reaction pathways, this review aims to provide a valuable resource for researchers seeking efficient, metal‐free strategies for amide bond manipulation.
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