首页> 外文期刊>The Journal of Organic Chemistry >Mechanistic insights on organocatalytic enantioselective decarboxylative protonation by epicinchona-thiourea hybrid derivatives
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Mechanistic insights on organocatalytic enantioselective decarboxylative protonation by epicinchona-thiourea hybrid derivatives

机译:环氧庚烷-硫脲杂化衍生物对有机催化对映选择性脱羧质子化的机理研究

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Mechanism and the origin of enantioselectivity in the decarboxylative protonation of α-amino malonate hemiester promoted by epicinchonaa- thiourea hybrid organocatalyst is established by using the DFT(M06-2X/6- 311+G**//ONIOM2) computational methods. The origin of stereoselectivity rendered by this hybrid bifunctional catalyst in asymmetric protonation is investigated for the first time using suitable transition-state models. A detailed conformational analysis of N-[3,5-bis(trifluoromethyl)] phenylthiourea-based epicinchonidine reveals the potential for a bifunctional mode of activation of the substrate α-amino malonate hemiester through hydrogen bonding. Six different conformer families differing in characteristic dihedral angles are identified within a range of 16 kcal/mol with respect to the lowest energy conformer. Different likely mechanistic pathways obtained through detailed analysis of the transition states and intermediates are compared. It is identified that in the preferred pathway, the decarboxylation is followed by a direct proton transfer from the chiral quinuclidinium moiety to the enolate carbon as opposed to a conventional protonation at the enolate oxygen followed by a ketoa-enol tautomerization. The factors responsible for high levels of observed stereoselectivity are traced to interesting hydrogen-bonding interactions offered by the thioureaa-cinchona bifunctional framework. The predicted stereoselectivities using computed Gibbs free energies of diastereomeric transition states are in fair agreement with the experimental stereoselectivities.
机译:利用DFT(M06-2X / 6- 311 + G ** // ONIOM2)计算方法,建立了由金鸡菊-硫脲杂化有机催化剂促进的α-氨基丙二酸半酯α-氨基丙二酸半酯脱羧质子化中对映选择性的机理和起源。首次使用合适的过渡态模型研究了这种杂化双官能催化剂在不对称质子化中产生的立体选择性的起源。基于N- [3,5-双(三氟甲基)]苯硫脲的环氧可可定的详细构象分析揭示了通过氢键激活底物α-氨基丙二酸半酯的双功能激活方式的潜力。相对于最低能量构象异构体,在16 kcal / mol的范围内鉴定出特征二面角不同的六个不同构象异构体家族。比较了通过详细分析过渡态和中间体获得的不同可能的机理途径。可以确定,在优选的途径中,与常规的在烯醇氧处的质子化,随后的酮醇-烯醇互变异构化相反,在优选的途径中,脱羧后是将质子从手性喹啉环鎓部分直接转移到烯醇化物碳上。高水平观察到的立体选择性的因素可追溯到由硫脲-金鸡纳双功能骨架提供的有趣的氢键相互作用。使用非对映过渡态的吉布斯自由能的预测立体选择性与实验立体选择性完全一致。

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