An introduction to the synthesis of nitroanilines and nitropyridines via three component ring transformation

S. Le, N. Nishiwaki
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Abstract

Nitro compounds show great importance in chemistry, biology and material sciences. Among them, nitropyridines and nitroanilines are widely used as useful intermediates for synthesis of biologically active compounds of pharmaceutical and agrochemical importance. Hence, we reported a powerful method for synthesis of various kinds of nitro compounds by using a three component ring transformation (TCRT) of dinitropyridone 1 with ketones in the presence of less nucleophilic ammonium acetate (NH4OAc) as nitrogen source. When pyridone 1 was reacted with aromatic ketone in the presence of ammonium acetate, 6-arylated 3-nitropyriines 2 were formed besides diazabicyclo compounds 3. This method was also applicable to cycloalkanones and α,β-unsaturated ketones to afford cycloalka[b]pyridines 4 and 6-alkynylated/alkenylated pyridines 5, respectively. It was found to be possible to use aldehydes as the substrate, what led to 3,5-disubstituted pyridines 6. On the other hand, when aliphatic ketones were employed as the substrate, two kinds of ring transformation proceeded. Namely, 2,6-disubstituted 4-nitroanilines 8 were formed in addition to nitropyridines 7. This protocol was successful applied to synthesis of N,N,2,6-tetrasubstituted nitroanilines 9 upon treatment of dinitropyridone 1 with ketone and amine in the presence of acetic acid.
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介绍了三组份环转化法合成硝基苯胺和硝基吡啶的方法
硝基化合物在化学、生物学和材料科学中具有重要意义。其中,硝基吡啶和硝基苯胺被广泛用作合成具有重要生物活性的医药和农化化合物的有用中间体。因此,我们报道了在亲核性较低的乙酸铵(NH4OAc)为氮源的情况下,利用二硝基吡啶酮1与酮体的三组分环转化(TCRT)合成多种硝基化合物的有效方法。当吡啶酮1与芳酮在乙酸铵存在下反应时,除重氮双环化合物3外,还生成6芳基化的3-硝基吡啶2。该方法同样适用于环烷酮和α,β-不饱和酮,分别得到环烷[b]吡啶4和6-炔基化/烯基化吡啶5。人们发现可以用醛作为底物,从而得到3,5-二取代吡啶6。另一方面,当脂肪族酮作为底物时,进行了两种环转化。即2,6-二取代4-硝基苯胺8是在硝基吡啶7之外生成的。在乙酸存在下,用酮和胺处理二硝基吡啶酮,成功地合成了N,N,2,6-四取代硝基苯胺9。
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