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Equilibrium shift induced by chiral nanoparticle precipitation in rhodium-catalyzed disulfide exchange reaction

机译:铑催化的二硫键交换反应中手性纳米粒子沉淀引起的平衡位移

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摘要

Chiral silica (P)-nanoparticles grafted with (P)-helicene recognize the molecular structure of a chiral diol disulfide in the presence of monool disulfide and dibutyl disulfide. The (P)-nanoparticles selectively adsorb the diol disulfide, aggregate, and precipitate from solution. Under rhodium-catalyzed equilibrium among three disulfides, the diol disulfide is removed from solution by precipitation, which induces an equilibrium shift in the solution. By conducting the precipitation experiment twice, we obtained the dial disulfide in 37% yield from a statistical 1:2:1 equilibrium mixture of three disulfides. The method is applied to a racemic monool disulfide, and an optically active dial disulfide is obtained via kinetic resolution and equilibrium shift. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在一元醇二硫化物和二丁基二硫化物存在下,接枝有(P)-螺旋烯的手性二氧化硅(P)-纳米颗粒可识别手性二醇二硫化物的分子结构。 (P)纳米颗粒选择性地吸附二硫化二醇,聚集并从溶液中沉淀出来。在三种二硫化物之间铑催化的平衡下,通过沉淀从溶液中除去二硫化二醇,这引起溶液中的平衡偏移。通过进行两次沉淀实验,我们从三种二硫化物的统计1:2:1平衡混合物中以37%的收率获得了二硫化二硫化物。将该方法应用于外消旋一元醇二硫化物,并通过动力学拆分和平衡位移获得旋光的二硫化二硫化物。 (C)2015 Elsevier Ltd.保留所有权利。

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