首页> 外文期刊>Journal of the Chemical Society, Perkin Transactions 1 >The suitability of anion-accelerated oxy-Cope rearrangement as a probe to study #pi#-facial selectivity. An experimental study with (6-mthyl-1-oxa-4-thiaspiro[4.5]dec-6-en-7-yl)(allyl)methanols
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The suitability of anion-accelerated oxy-Cope rearrangement as a probe to study #pi#-facial selectivity. An experimental study with (6-mthyl-1-oxa-4-thiaspiro[4.5]dec-6-en-7-yl)(allyl)methanols

机译:阴离子促进的氧-Cope重排作为研究#pi#面部选择性的探针的适用性。 (6-甲基-1-氧杂-4-硫杂螺[4.5] dec-6-en-7-基)(烯丙基)甲醇的实验研究

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[(6-Methyl-1-oxa-4-thiaspiro[4.5]dec-6-en-7yl)(allyl)methanols were subjected to anion-accelerated oxy-Cope rearrangement in solvents such as THF, benzene and DME to assess the #pi#-facial selectivity caused by the acetal function. The diastereomeric pairs 17a and 17b (R - Ph) furnished the same two diastereomeric products 18a and 18b, differing only in the relative preponderance. The reaction of 17a turned from mostly syn to oxygen (18a : 18b = 1 : 4) in THF to moderately syn to sulfur (18a : 18b = 2.2 : 1) in DME. The reaction was completely nonselective in benzene. The effect of solvent on the reaction of 17b was even more interesting. The reaction turned from completely nonselective (18a : 18b = 1 : 1) in THF to highly syn to sulfur (18a : 18b = 5.4 : 1) in DME. The selectivity in benzene was somewhere in between (18a : 18b = 2.7 : 1). Likewise, the reaction of 17b (R = H) turned from moderately syn to oxygen in THF (18a : 18b = 1 : 2) to nearly nonselective in DME (18a : 18b = 1 : 1.1). The rotation around the bond between the methanol carbon and the adjacent ring-carbon is restricted to allow rearrangement only syn to sulfur in 17a and syn to oxygen in 17b. The considerable erosion in the observed diastereoselectivity is due to a radical and/or ionic retroaldol-recombination process.The radical pathway, however, is more prevalent than the ionic alternative.The recombination favors somewhat the addition of the allyl radical to the cogenerated 7-benzoyl-6-methyl-1-oxa-4-thiaspiro[4.5]dec-6-ene on the face syn to the sulfur. As a result of such dissociation and recombination, the oxy-Cope rearrangement does not appear suitable as a probe for the study of diastereofacial selectivity.
机译:[(6-甲基-1-氧杂-4-噻吩并[4.5] dec-6-en-7yl)(烯丙基)甲醇在THF,苯和DME等溶剂中进行阴离子加速的氧化Cope重排,以评估由乙缩醛功能引起的#pi#面部选择性。非对映异构体对17a和17b(R-Ph)提供相同的两个非对映异构体产物18a和18b,只是相对优势不同。 17a的反应从THF中的大部分正合成为氧气(18a:18b = 1:4)到DME中的适度合成为硫(18a:18b = 2.2:1)。该反应在苯中是完全非选择性的。溶剂对17b反应的影响甚至更令人感兴趣。反应从在THF中的完全非选择性(18a:18b = 1:1)转变为在DME中与硫(18a:18b = 5.4:1)高度同构。苯的选择性介于(18a:18b = 2.7:1)之间。同样,17b(R = H)的反应从THF中的适度合成反应转变为氧气(18a:18b = 1:2),在DME中几乎变为非选择性(18a:18b = 1:1.1)。限制围绕甲醇碳和相邻的环碳之间的键的旋转,以允许仅在17a中与硫同和在17b中与氧同位。观察到的非对映选择性的显着侵蚀是由于自由基和/或离子逆向醛醇的重组过程引起的,但是自由基的途径比离子的替代途径更为普遍,这种重组在一定程度上有利于将烯丙基加入到共生成的7-苯硫基表面上的苯甲酰基-6-甲基-1-氧-1--4-硫杂螺[4.5] dec-6-烯。由于这种解离和重组,oxy-Cope重排似乎不适合用作研究非对面选择性的探针。

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