REACTION OF PYRIDO[2,1-a]ISOINDOLE WITH З (R)- AND (S)- N-α-METHILBENZYLMALEIMIDE

T. Yegorova, B. Barnych, Z. Voitenko
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Abstract

Selective chemical reactions create new possibilities for controlled synthesis of compounds with pre-designed properties for further use in medical chemistry, material science and other fields. This is especially useful for such synthetic methodology as [4+2] cycloaddition. Current work is dedicated to study of reactions between N-chiral maleinimides with cyclic dienes based on the pyridoisoindol. Pyrido[2,1-a]isoindol turned out to be the most practical object to study the first example of asymmetric variant of the Diels-Alder reaction involving condensed isoindols. Previously, we established that this heterocyclic system, in contrast to other azino- and azoloisoindols, upon undergoing cycloaddition with non-chiral maleinimides gives only rearranged adducts of the first type. This type of compounds have also interesting stereochemistry: in solid state they have twisted double bond (twist angle 7-10°), while in solution they exist as a mixture of athropodiastereomeres due to the asymmetric Carbon atom and hindered rotation around С–С bond between exocyclic double bond and 2-(α-pyridil)phenyl fragment. Initial expectation was that chiral induction would influence the ratio of corresponding athropodiastereomeres. Calculations show that there are four possible athropodiastereomeres due to the chiral center and sterically hindered chiral axis. In case of non-chiral dienophiles, reaction results in two major diastereomeres (for our purposes marked as A and B) with 70:30 ration and two minor isomers (marked С and D respectively), the latter constituting less than 5% of the total amount. Major and minor isomers are in constant complex equilibrium, controlled via slow rotation of around corresponding С-С bond on one hand (which is the reason for athropodiastereomeres between major forms A and B, shown via NMR spectra at different temperatures), and on the other hand – fast equilibrium due to the 1,5-sigmatropic shift (cause for the minor forms C and D). Target reaction was studied under standard conditions for this rearrangement and under the kinetic control in the inert atmosphere at -80°С using TiCl4 as catalyzer. We therefore show that reaction pathway is similar to our previous examples and results in rearranged adducts of the first type. Ratio of athropodiastereomeres (both major and minor forms) is different from previous examples using non-chiral 2-substituted maleimides. Asymmetric induction spontaneously transfers from influencing the Diels-Alder reaction to influencing synchronic sigmatropic rearrangement, which is the final stage in the formation of the rearranged adduct of the first type in condensed isoindol systems.
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吡啶[2,1-a]异吲哚与З (R)-和(S)- N-α-甲基苄基马来酰亚胺的反应
选择性化学反应为控制合成具有预先设计性能的化合物创造了新的可能性,这些化合物可进一步用于医学化学、材料科学和其他领域。这对于[4+2]环加成等合成方法特别有用。目前主要研究n -手性马来酰亚胺与吡啶异吲哚类环二烯的反应。Pyrido[2,1-a]异吲哚被证明是研究Diels-Alder反应不对称变体中涉及缩合异吲哚的第一个例子中最实用的对象。在此之前,我们确定了该杂环体系,与其他氮基和偶氮异吲哚相比,在与非手性马来酰亚胺进行环加成后,只得到第一类重排加合物。这类化合物还具有有趣的立体化学性质:在固体状态下,它们具有扭曲的双键(扭转角为7-10°),而在溶液中,由于碳原子的不对称和绕С -С外环双键和2-(α-吡啶)苯基片段的旋转受阻,它们以脂肪脚非对映体的混合物存在。最初的预期是手性诱导会影响相应的肌足异体的比例。计算表明,由于手性中心和位阻手性轴的存在,有四种可能的肌足非对映体。对于非手性亲二烯亲和物,反应产生两个比例为70:30的主要非对映异构体(为我们的目的标记为A和B)和两个次要异构体(分别标记为С和D),后者占总量不到5%。主要异构体和次要异构体处于恒定的复杂平衡状态,一方面通过相应С-С键的缓慢旋转来控制(这就是主要形式A和B之间的肌脚非对映体的原因,通过不同温度下的核磁共振光谱显示);在-80°С的惰性气氛中,以TiCl4为催化剂,在动力学控制下,研究了这种重排的标准条件下的目标反应。因此,我们表明反应途径与我们前面的例子相似,并导致第一类加合物的重排。肌足非对映体的比例(包括主要形式和次要形式)与先前使用非手性2-取代马来酰亚胺的例子不同。不对称诱导自发地从影响Diels-Alder反应转变为影响同步信号型重排,这是缩合异吲哚体系中第一类重排加合物形成的最后阶段。
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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