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首页> 外文期刊>Catalysis science & technology >Unveiling the mechanisms and secrets of chemoselectivities in Au(i)-catalyzed diazo-based couplings with aryl unsaturated aliphatic alcohols
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Unveiling the mechanisms and secrets of chemoselectivities in Au(i)-catalyzed diazo-based couplings with aryl unsaturated aliphatic alcohols

机译:发布的机制和秘密chemoselectivities在非盟(i)催化diazo-based联轴器与芳基不饱和脂肪醇

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摘要

Density functional theory (DFT) calculations have been conducted to unravel the mechanisms and chemoselectivities of Au-catalyzed diazo-based couplings with phenyl unsaturated aliphatic alcohols: the propargyl alcohol Ba resulting in the [4 + 1]-cycloaddition product P-4a and the allyl alcohol Db giving the [2,3]-sigma rearrangement species P-5b. P-4a formation involves a catalyst interaction with phenyldiazoacetate, N-2 release, a hydroxyl O nucleophilic attack of Ba, a [1,4]-H shift, coordination isomerization, 5-endo-dig cyclization, a [4,1]-H shift and a H2O-assisted [1,3]-H shift. After the [4,1]-H shift, the slightly less favorable five-membered ring-opening possibly follows to afford trace P-5a ([2,3]-sigma rearrangement product), which would be kept in solution due to subsequent irreversible evolution. In addition, the Ba-involved chemoselectivity was probed and explained as follows: (i) both large H(hydroxyl)C(carbene) electrostatic repulsion and strong three-membered ring strain involved in the TS make the formation of the O-H insertion product P-1a difficult and (ii) the nucleophilic attack from the C-2 atom of Ba brings about a structural twisting and thus increases the energy penalty forming the cyclopropenation product P-2a. On the other hand, compared with the sp-C-2 atom of Ba, the sp(2)-C-2 atom of Db greatly facilitates the five-membered ring-opening step because of the presence of an extra p-p orbital overlap and eventually provides P-5b exclusively.
机译:密度泛函理论(DFT)计算进行了机制和瓦解的chemoselectivities Au-catalyzed diazo-based联轴器与苯不饱和脂肪醇:炔丙基醇英航导致(4 + 1)产品P-4a和环加成作用烯丙醇Db[2、3]σP-5b重排物种。涉及与催化剂羟基O phenyldiazoacetate, n -释放英航的亲核攻击[1,4]- h的转变,协调异构化,5-endo-dig环化,(4 1)- h和H2O-assisted转变(1,3) - h的转变。稍微不那么有利的五元开环可能是买得起痕迹P-5a([2、3]σ重排产品),保持在溶液中由于后续吗不可逆转的进化。Ba-involved chemoselectivity探测和两大解释如下:(i)H(羟基)C(碳烯)静电排斥和强大的三元环应变参与TS地插入的形成产品P-1a困难,(ii)亲核攻击英航带来的c - 2原子结构扭曲,从而增加了能量点球形成cyclopropenation产品P-2a。英航的原子,sp (2) c2原子的Db促进了五元开环的一步因为存在一个额外的p p轨道并最终提供P-5b完全重叠。

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