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首页> 外文期刊>Journal of molecular modeling >Mechanism of AuCl3-catalyzed cyclization of 1-(Indol-2-yl)-3- alkyn-1-ols: a DFT study
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Mechanism of AuCl3-catalyzed cyclization of 1-(Indol-2-yl)-3- alkyn-1-ols: a DFT study

机译:AuCl3催化1-(吲哚-2-基)-3-炔基-1-醇环化的机理:DFT研究

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A computational study with the B3LYP functional was carried out to elucidate the mechanisms of AuCl3- and AgOTf-catalyzed cyclization of 1-(indol-2-yl)-3-alkyn-1-ols. The theoretical studies suggested that the two main processes, cycloaddition and hydrogen-transfer, are included in all possible reaction pathways. Calculations revealed that AuCl3 is more effective in catalytic ability than AgOTf to catalyze the cyclization of 1-(indol-2-yl)-3-alkyn-1-ols into carbazole derivatives. More importantly, we found that the ligands of catalysts, Cl~- and OTf-, are critical in a stepwise protontransport process involved in intramolecular nucleophilic addition because they act as a proton shuttle to lower the activation free energy barrier of the rate-determining step. The theoretical discovery of the role of ligands of catalysts in hydrogen shift process suggests that AuCl_(3~-) and AgOTfcatalyzed cyclization of 1-(indol-2-yl)-3-alkyn-1-ols can be accelerated when ligands with the property of nucleophile are used. Our theoretical calculations reproduced the experimental results very well. The present study is expected to help understand other transition metal-catalyzed reactions and to give guidance for future design of new catalysts.
机译:进行了具有B3LYP功能的计算研究,以阐明AuCl3-和AgOTf催化的1-(吲哚-2-基)-3-炔基-1-醇环化机理。理论研究表明,所有可能的反应路径均包括两个主要过程,即环加成反应和氢转移反应。计算表明,AuCl3在催化能力上比AgOTf更有效,可催化1-(吲哚-2-基)-3-炔基-1-醇环化为咔唑衍生物。更重要的是,我们发现,催化剂的配体Cl〜-和OTf-在参与分子内亲核加成的逐步质子传输过程中至关重要,因为它们充当质子穿梭来降低速率决定步骤的活化自由能垒。催化剂配体在氢转移过程中的作用的理论发现表明,当具有配体的AuCl_(3〜-)和AgOTf催化1-(吲哚-2-基)-3-炔基-1-醇的环化反应可以加速。使用亲核试剂的性质。我们的理论计算很好地再现了实验结果。本研究有望帮助理解其他过渡金属催化的反应,并为将来设计新的催化剂提供指导。

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