化学
对映选择合成
纳米技术
功能多样性
组合化学
合成生物学
生化工程
有机合成
药物发现
有机分子
光催化
化学合成
基质(水族馆)
反应条件
催化作用
底物特异性
作者
Jisna Jose,Diana Elizabeth Jose,Thomas Mathew
标识
DOI:10.1002/ejoc.202501074
摘要
α‐amino ketones (α‐AKs) serve as valuable building blocks in synthetic and medicinal chemistry because they are found in many pharmaceuticals and molecules that are biologically active. Different catalytic strategies for their synthesis have been developed as a result of their structural diversity and functional versatility. This review offers a thorough summary of recent developments (2020–2025) in the catalytic synthesis of α‐AKs, emphasizing two main categories: enantioselective (chiral) and achiral methods. Chiral techniques, which offer high enantioselectivity and wide substrate scopes, include transition metal catalysis, organocatalysis, photoredox catalysis, and their combinations. Despite being simpler and more scalable, chiral strategies are useful for quickly building α‐AK scaffolds. With a focus on reaction design, mechanism, tolerance to functional groups, and synthetic utility, recent synthetic approaches are discussed. In addition to outlining the opportunities and challenges that lie ahead in extending the synthetic accessibility and application of these privileged molecular architectures, the review highlights the advancements that have been made in both fields.
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