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A theoretical study of DABCO and PPh3 catalyzed annulations of allenoates with azodicarboxylate

机译:用氮杂羧酸丁酯的DABCO和PPH3催化环盐的理论研究

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Previous experiments have shown that DABCO -catalyzed annulation of 2,3-butadienoate and diethylazodicarboxylate leads to 1,2-diazetidine (reaction (1)), whereas PPh _(3) -catalyzed 2-benzyl-2,3-butadienoate and diethylazodicarboxylate gives pyrazoline (reaction (2)). To understand the difference, the mechanisms of the two reactions have been studied using density functional theory (DFT) calculations. The calculated results indicate that the two reactions follow different reaction sequences. The favorable mechanism of reaction (1) includes four steps: (i) the nucleophilic attack of DABCO on 2,3-butadienoate forms a zwitterionic intermediate, (ii) the γ-addition of the zwitterionic intermediate to diethylazodicarboxylate, (iii) the intramolecular 4- exo -trig cyclization, and (iv) the catalyst DABCO liberation gives the final product, with Z -1,2-diazetidine being the main product. As for reaction (2), the first step is the formation of a zwitterionic intermediate via the addition of PPh _(3) to diethylazodicarboxylate. The second step is the addition of the zwitterionic intermediate to the β-carbon atom of 2-benzyl-2,3-butadienoate, followed by the intramolecular cycloaddition. Finally, the elimination of triphenylphosphine oxide OPPh _(3) affords pyrazoline. Our calculation results are in good agreement with experimental findings. The present study may be helpful not only for rational design of high-efficiency catalysts but also for understanding the reaction mechanism of similar reactions.
机译:先前的实验表明,DABCO -CATalyzEd的2,3-丁二酸二甲基羧酸甲酯环盐导致1,2-二氮杂物(反应(1)),而PPH _(3) - 催化2-苄基-2,3-丁二烯酸和二乙基亚二羧酸二甲基二羧酸盐给吡唑啉(反应(2))。为了了解差异,已经使用密度泛函理论(DFT)计算研究了两种反应的机制。计算结果表明两种反应遵循不同的反应序列。反应(1)的有利机制包括四个步骤:(i)Dabco对2,3-丁二烯酸酯的亲核攻击形成两性离子中间体,(ii)γ-加入二乙基亚甲基二羧酸二乙基亚二羧酸甲酯,(iii)分子内中间体4- EXO -TRIG环化和(iv)催化剂DABCO释放给出最终产品,用Z-1,2-二氮化丁片是主要产品。对于反应(2),第一步骤是通过加入PPH _(3)至二乙基氮杂甲酸二甲基二羧酸酯的形成。第二步是向2-苄基-2,3-丁二烯酸盐的β-碳原子添加两步中间体,其次是分子内环加成。最后,消除三苯基氧基氧化物OPPH _(3)提供吡唑啉。我们的计算结果与实验结果吻合良好。本研究不仅可以有助于高效催化剂的理性设计,而且有助于理解类似反应的反应机制。

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