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One-pot synthesis of oxazolidinones and five-membered cyclic carbonates from epoxides and chlorosulfonyl isocyanate: theoretical evidence for an asynchronous concerted pathway

机译:来自环氧化物和氯芬太氰酸酯的恶唑烷酮和五元环碳酸盐的单壶合成:异步齐齐通途径的理论证据

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摘要

The one-pot reaction of chlorosulfonyl isocyanate (CSI) with epoxides having phenyl, benzyl and fused cyclic alkyl groups in different solvents under mild reaction conditions without additives and catalysts was studied. Oxazolidinones and five-membered cyclic carbonates were obtained in ratios close to 1:1 in the cyclization reactions. The best yields of these compounds were obtained in dichloromethane (DCM). Together with 16 known compounds, two novel oxazolidinone derivatives and two novel cyclic carbonates were synthesized with an efficient and straightforward method. Compared to the existing methods, the synthetic approach presented here provides the following distinct advantageous: being a one-pot reaction with metal-free reagent, having shorter reaction times, good yields and a very simple purification method. Moreover, using the density functional theory (DFT) method at the M06-2X/6-31+G(d,p) level of theory the mechanism of the cycloaddition reactions has been elucidated. The further investigation of the potential energy surfaces associated with two possible channels leading to oxazolidinones and five-membered cyclic carbonates disclosed that the cycloaddition reaction proceeds via an asynchronous concerted mechanism in gas phase and in DCM.
机译:研究了在不含添加剂和催化剂的温和反应条件下不同溶剂中具有苯基,苄基,稠合环状烷基的环氧化合物的单罐反应。在环化反应中以近1:1的比率获得恶唑烷酮和五元环碳酸盐。在二氯甲烷(DCM)中获得这些化合物的最佳产量。用有效和直接的方法合成了与16种已知的化合物,两种新的恶唑烷酮衍生物和两种新的环碳酸酯合成。与现有方法相比,这里呈现的合成方法提供了以下明显的优点:作为无金属试剂的单罐反应,具有较短的反应时间,良好的产率和非常简单的纯化方法。另外,在M06-2X / 6-31 + G(D,P)理论水平的情况下,使用密度函数理论(DFT)方法阐明了环加成反应的机制。进一步研究与导致恶唑烷酮和五元环碳酸酯的两种可能通道相关的潜在能量表面公开了环加成反应通过气相和DCM中的异步齐齐的机制进行。

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