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首页> 外文期刊>Chemical science >Self-assembled M12L24 nanospheres as a reaction vessel to facilitate a dinuclear Cu(i) catalyzed cyclization reaction
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Self-assembled M12L24 nanospheres as a reaction vessel to facilitate a dinuclear Cu(i) catalyzed cyclization reaction

机译:自组装的M12L24纳米球作为反应容器,以促进双核Cu(i)催化的环化反应

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The application of large M _(12) L _(24) nanospheres allows the pre-concentration of catalysts to reach high local concentrations, facilitating reactions that proceed through dinuclear mechanisms. The mechanism of the copper( I )-catalyzed cyclization of 4-pentynoic acid has been elucidated by means of a detailed mechanistic study. The kinetics of the reaction show a higher order in copper, indicating the formation of a bis-Cu intermediate as the key rate determining step of the reaction. This intermediate was further identified during catalysis by CIS-HRMS analysis of the reaction mixture. Based on the mechanistic findings, an M _(12) L _(24) nanosphere was applied that can bind up to 12 copper catalysts by hydrogen bonding. This pre-organization of copper catalysts in the nanosphere results in a high local concentration of copper leading to higher reaction rates and turnover numbers as the dinuclear pathway is favored.
机译:大的M _(12)L _(24)纳米球的应用允许催化剂的预浓缩达到较高的局部浓度,从而促进了通过双核机理进行的反应。通过详细的机理研究已经阐明了铜(I)催化的4-戊酸环化的机理。反应动力学在铜中显示出较高的阶数,表明形成双铜中间体是反应的关键速率确定步骤。通过催化反应混合物的CIS-HRMS分析进一步鉴定了该中间体。基于机理发现,应用了M _(12)L _(24)纳米球,该球可通过氢键结合最多12个铜催化剂。铜催化剂在纳米球中的这种预组织导致了铜的高局部浓度,导致了较高的反应速率和周转次数,因为双核途径受到青睐。

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