首页> 外文期刊>Helvetica chimica acta >1,5-DIPOLAR ELECTROCYCLIZATION OF ACYL-SUBSTITUTED THIOCARBONYL-YLIDES TO 1,3-OXATHIOLES [German]
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1,5-DIPOLAR ELECTROCYCLIZATION OF ACYL-SUBSTITUTED THIOCARBONYL-YLIDES TO 1,3-OXATHIOLES [German]

机译:酰基取代的硫代羰基丙烯酸酯的1,5-二元电化学环化成1,3-氧杂环丁烷[德国]

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摘要

The reaction of alpha-diazoketones 15a,b with 4,4-disubstituted 1,3-thiazole-5(4H)-thiones 6 (Scheme 3), adamantanethione (17), 2,2,4,4-tetramethyl-3-thioxocyclobutanone (19; Scheme 4), and thiobenzophenone (22; Scheme 5), respectively, at 50-90 degrees gave the corresponding 1,3-oxathiole derivatives as the sole products in high yields. This reaction opens a convenient access to this type of five-membered heterocycles. The structures of three of the products, namely 16c, 16f, and 20b, were established by X-ray crystallography. The key-step of the proposed reaction mechanism is a 1,5-dipolar electrocyclization of an acyl-substituted 'thiocarbonyl-ylide' (rf. Scheme 6). The analogous reaction of 15a,b with 9H-xanthen-9-thione (24a) and 9H-thioxanthen-9-thione (24b) yielded alpha,beta-unsaturated ketones of type 25 (Scheme 5). The structures of 25a and 25c were also established by X-ray crystallography. The formation of 25 proceeds via a 1,3-dipolar electrocyclization to a thiirane intermediate (Scheme 6) and desulfurization. From the reaction of 15a with 24b in THF at 50 degrees, the intermediate 26 (Scheme 5) was isolated. In the crude mixtures of the reactions of 15a with 17 and 19, a minor product containing a CHO group was observed by IR and NMR spectroscopy. In the case of 19, this side product could be isolated and was characterized by X-ray crystallography to be 21 (Scheme 4). It was shown that 21 is formed - in relatively low yield - from 20a. Formally, the transformation is an oxidative cleavage of the C=C bond, but the reaction mechanism is still not known. [References: 73]
机译:α-重氮酮15a,b与4,4-二取代的1,3-噻唑-5(4H)-硫酮6(方案3),金刚烷硫酮(17),2,2,4,4-四甲基-3-的反应硫氧代环丁酮(19;方案4)和硫代二苯甲酮(22;方案5)分别在50-90度下以高收率得到相应的1,3-氧杂硫醇衍生物作为唯一产物。该反应为进入这种五元杂环提供了便利。通过X射线晶体学确定了三种产物的结构,即16c,16f和20b。拟议的反应机理的关键步骤是酰基取代的“硫代羰基-内酯”的1,5-偶极电环化(流程6)。 15a,b与9H-黄嘌呤-9-硫酮(24a)和9H-硫杂蒽-9-硫酮(24b)的类似反应产生25型的α,β-不饱和酮(方案5)。 25a和25c的结构也通过X射线晶体学确定。 25的形成通过1,3-偶极电环化进行至硫杂环戊烷中间体(方案6)并脱硫。从15a与24b在THF中在50度的反应中,分离出中间体26(方案5)。在15a与17和19的反应的粗混合物中,通过IR和NMR光谱观察到含有CHO基团的次要产物。在19的情况下,可以分离出该副产物,并通过X射线晶体学表征为21(方案4)。结果表明,由20a形成21(收率相对较低)。形式上,该转化是C = C键的氧化裂解,但反应机理仍然未知。 [参考:73]

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