Jana Ranjan, Pradhan Kangkan
Organic and Medicinal Chemistry Division, CSIR-Indian Institute of Chemical Biology, 4 Raja S. C. Mullick Road, Kolkata 700032, India.
Chem Commun (Camb). 2024 Aug 15;60(67):8806-8823. doi: 10.1039/d4cc02582b.
The nitro moiety is an indispensable functional group in organic synthesis due to its facile introduction and reduction to the corresponding amines for a plethora of organic transformations. Owing to its distinct electronegative and conventional properties, it has been used for activated aromatic nucleophilic substitution (SAr) reactions, Smiles reactions, Henry reactions, acyl anion equivalents, Recently, the excellent photochemical properties of nitroarenes have been rediscovered by several groups, and their untapped potential in organic synthesis under UV or visible light irradiation has been exploited. Photoexcited nitroarenes can undergo facile reduction to amines, azo-coupling, metal-free reductive C-N coupling with boronic acids a 1,2-boronate shift, hydrogen atom transfer (HAT), oxygen atom transfer for anaerobic oxidation of organic molecules, molecular editing nitrene intermediates, denitrative coupling of β-nitrostyrene, radical α-alkylation of nitroalkanes, They have also been used as a photolabile protecting group in medicinal chemistry and chemical biology applications. Here, we summarise the recent findings on visible-light-mediated transformations involving nitro-containing organic molecules.
硝基部分在有机合成中是一个不可或缺的官能团,这是因为它易于引入,并且能被还原为相应的胺,可用于众多有机转化反应。由于其独特的电负性和常规性质,它已被用于活性芳香亲核取代(SAr)反应、斯迈尔斯反应、亨利反应、酰基阴离子等价物。最近,几个研究小组重新发现了硝基芳烃优异的光化学性质,并开发了它们在紫外光或可见光照射下在有机合成中尚未开发的潜力。光激发的硝基芳烃可轻松还原为胺、进行偶氮偶联、与硼酸进行无金属还原C-N偶联、发生1,2-硼酸酯迁移、氢原子转移(HAT)、用于有机分子厌氧氧化的氧原子转移、分子编辑、生成氮烯中间体、β-硝基苯乙烯的脱硝基偶联、硝基烷烃的自由基α-烷基化。它们还在药物化学和化学生物学应用中被用作光不稳定保护基团。在此,我们总结了近期关于可见光介导的涉及含硝基有机分子转化的研究成果。