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首页> 外文期刊>Chemistry, an Asian journal >Gold(I)-Catalyzed Enantioselective Intermolecular Hydroarylation of Allenes with Indoles and Reaction Mechanism by Density Functional Theory Calculations
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Gold(I)-Catalyzed Enantioselective Intermolecular Hydroarylation of Allenes with Indoles and Reaction Mechanism by Density Functional Theory Calculations

机译:密度泛函理论计算的金(I)催化的烯丙二烯与对映体的对映选择性分子间氢芳基化反应机理

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Chiral binuclear gold(I) phosphine complexes catalyze enantioselective intermolecular hydroarylation of allenes with indoles in high product yields (up to 90percent) and with moderate enantioselectivities (up to 63percent ee). Among the gold(I) complexes examined, better ee values were obtained with binuclear gold(I) complexes, which displayed intramolecular Au~(I)-Au~(I) interactions. The binuclear gold(I) complex 4c [(AuCl)_(2)(L3)] with chiral biaryl phosphine ligand (S)-(-)-MeO-biphep (L3) is the most efficient catalyst and gives the best ee value of up to 63percent. Substituents on the allene reactants have a slight effect on the enantioselectivity of the reaction. Electron-withdrawing groups on the indole substrates decrease the enantioselectivity of the reaction. The relative reaction rates of the hydroarylation of 4-X-substituted 1,3-diarylallenes with N-methylindole in the presence of catalyst 4c [(AuCl)_(2)(L3)]/AgOTf [L3 velence (S)-(-)-MeO-biphep], determined through competition experiments, correlate (r~(2)velence0.996) with the substituent constants sigma. The slope value is -2.30, revealing both the build-up of positive charge at the allene and electrophilic nature of the reactive Au~(I) species. Two plausible reaction pathways were investigated by density functional theory calculations, one pathway involving intermolecular nucleophilic addition of free indole to aurated allene intermediate and another pathway involving intramolecular nucleophilic addition of aurated indole to allene via diaurated intermediate E2. Calculated results revealed that the reaction likely proceeds via the first pathway with a lower activation energy. The role of Au~(I)-Au~(I) interactions in affecting the enantioselectivity is discussed.
机译:手性双核金(I)膦配合物催化吲哚的对映体选择性分子间氢芳基化反应,吲哚的收率高(高达90%),中等对映选择性(ee高达63%)。在所研究的金(I)配合物中,双核金(I)配合物显示出更好的ee值,该双核金(I)配合物表现出分子内Au〜(I)-Au〜(I)相互作用。具有手性联芳基膦配体(S)-(-)-MeO-Biphep(L3)的双核金(I)配合物4c [(AuCl)_(2)(L3)]是最有效的催化剂,并且具有最佳的ee值高达63%。丙二烯反应物上的取代基对反应的对映选择性略有影响。吲哚底物上的吸电子基团降低了反应的对映选择性。在催化剂4c [[(AuCl)_(2)(L3)] / AgOTf [L3 velence(S)-()下,4-X-取代的1,3-二芳基烯与N-甲基吲哚进行氢芳基化的相对反应速率-)-MeO-biphep],是通过竞争实验确定的,(r〜(2)velence0.996)与取代基常数sigma相关。斜率值为-2.30,揭示了在丙二烯上正电荷的积累和反应性Au〜(I)物种的亲电性质。通过密度泛函理论计算研究了两种可能的反应途径,一种途径涉及将游离吲哚的分子间亲核加成到充气的丙二烯中间体中,另一种途径涉及将芳香族的吲哚分子内亲核加成到经过修饰的中间体E2的丙二烯中。计算结果表明,该反应可能以较低的活化能通过第一途径进行。讨论了Au〜(I)-Au〜(I)相互作用在影响对映选择性中的作用。

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