Quinazolines. Part XVIII. A second stereospecific cis-addition of the elements of nitromethane across a tetrasubstituted ethylenic double bond. A concerted mechanism for the reaction of nitroacetic acid with enamines

W. Armarego, Toshihiko Kobayashi
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引用次数: 5

Abstract

The reaction of ethyl 3,4,5,6-tetrahydroanthranilate with nitroacetic acid gave, stereospecifically, ethyl cis-2-amino-trans-2-nitromethylcyclohexanecarboxylate (7) in 70% yield. The stereochemistry was deduced by the following sequence of reactions: (7)→ ethyl cis-2-amino-trans-2-aminomethylcyclohexanecarboxylate (8)→ 3a-amino-trans-perhydroisoindol-1-one (9)→ 3a-(N′-phenylureido)-trans-perhydroisoindol-1-one (10)→ 8a-aminomethyl-3-phenyl-cis-perhydroquinazoline-2,4-dione hydrochloride (18)→ 8a-bromomethyl-3-phenyl-cis-perhydroquinazoline-2,4-dione (19)→ 8a-methyl-3-phenyl-cis-perhydroquinazoline-2,4-dione (20), in which the configuration at the asymmetric centres was preserved. Compound (20) was prepared from authentic methyl trans-2-methyl-cis-2-(N′-phenylureido)cyclohexanecarboxylate (22) by cyclisation with methanolic sodium hydroxide. Although this cyclisation in a deuteriated medium proceeded with complete exchange of the 4a-proton in the dione (20), it was shown to occur with retention of configuration by reduction with sodium dihydrobis-(2-methoxyethoxy)aluminate to cis-2-anilinomethyl-1,N-dimethylcyclohexylamine (25) and then to 1,8a-dimethyl-3-phenyl-cis-perhydroquinazoline (26), whose 1H n.m.r. spectrum was unambiguous.The trans stereochemistry of the isoindolone (9) was confirmed by reduction to 3a-amino-trans-perhydroisoindole (14) whose 1H n.m.r. spectrum was similar to that of 3a-methylanalogue (15) but different from that of 3a-methyl-cis-perhydroisoindole (16).This second observation of a stereospecific cis-addition of the elements of nitromethane strongly supports a concerted mechanism for the reaction of nitroacetic acid with enamines. Further evidence is reported from experiments in [2H3]nitromethane which show that no deuterium was incorporated into the nitromethane adducts.N.m.r. spectra of various compounds are discussed in connection with the generality of application of the principle that the protons in the alicyclic six-membered rings of reduced six–five, six–six and six–seven membered fused ring systems give a narrow band envelope for cis ring fusion and a wide band envelope for trans ring fusion.
喹唑啉。十八。硝基甲烷元素在四取代乙烯双键上的第二个立体定向顺式加成。硝基乙酸与胺类反应的一致机理
3,4,5,6-四氢邻氨基甲酸乙酯与硝基乙酸反应,立体特异性地得到了产率为70%的顺-2-氨基-反-2-硝基甲基环己烷甲酸乙酯(7)。立体化学是通过以下反应序列推导出来的:(7)→乙基顺-2-氨基-反-2-氨基甲基环己烷甲酸酯(8)→3-氨基-反-过氢异吲哚-1-酮(9)→3a-(N ' -苯基脲)-反-过氢异吲哚-1-酮(10)→8 -氨基甲基-3-苯基顺-过氢喹唑啉-2,4-二酮盐化物(18)→8 -溴甲基-3-苯基顺-过氢喹唑啉-2,4-二酮(19)→8 -甲基-3-苯基顺-过氢喹唑啉-2,4-二酮(20),其中不对称中心的构型保持不变。以正品甲基反式-2-甲基顺式-2-(N′-苯基脲基)环己anecarboxylate(22)为原料,与甲醇氢氧化钠环化制备化合物(20)。尽管在氘化介质中,这种环化过程是与双酮中的4 -质子完全交换(20),但通过二氢双(2-甲氧基乙氧基)铝酸钠还原成顺-2-苯胺甲基- 1,n -二甲基环己胺(25),然后还原成1,8 -二甲基-3-苯基顺-过氢喹唑啉(26),其1H nmr谱是明确的。异吲哚酮(9)的反式立体化学被还原为3a-氨基-反式过氢异吲哚(14),其1H nmr谱与3a-甲基类似物(15)相似,但与3a-甲基-顺式过氢异吲哚(16)不同。对硝基甲烷元素立体特异性顺式加成的第二次观察有力地支持了硝基乙酸与胺反应的一致机制。[2H3]硝基甲烷的实验进一步证明,硝基甲烷的加合物中没有氘。本文讨论了各种化合物的光谱,并讨论了简化的六五元、六六元和六七元熔合环体系的脂环六元环中的质子对顺环熔合具有窄带包络,对反环熔合具有宽带包络这一原理的一般应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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