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Competition of ester, amide, ether, carbonate, alcoholand epoxide ligands in the dirhodium experiment (chiral discrimination by nmr spectroscopy) [1]

机译:dirhodium实验中酯,酰胺,醚,碳酸酯,醇和环氧化物配体的竞争(通过核磁共振光谱法进行手性鉴别)[1]

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摘要

Thirty-eight derivatives of 3-hydroxy-2-methylpropanoic acid, each with two different oxygen functionalities, were synthesized and subjected to the standard dirhodium experiment (~1H NMR in the presence of an equimolar amount of the chiral dirhodium tetracarboxylate complex Rh*). Their structures represent ester, amide, carbonate, ether, alcohol and/or epoxy groups. Significant selectivity in the binding of those oxygen groups to the complex were determined. From these results, a priority list in binding to a rhodium atom of Rh*was established: epoxides > primary alcohols > ethers ≥ esters ≥ amides > carbonates > tertiary alcohols This sequence allows the prediction of the preferred binding site of oxygen-containing groups in polyfunctional compounds, which frequently occur among natural products, and, particularly, in asymmetric synthesis of such compounds. Differentiation of the enantiomers by the dirhodium experiment is easily accomplished due to numerous signal dispersions in nearly all cases.
机译:合成了38种3-羟基-2-甲基丙酸的衍生物,每种衍生物具有两种不同的氧官能度,并进行标准的dirhodium实验(〜1H NMR,存在等摩尔量的手性四羧酸四氢二铜吡啶鎓铑Rh *) 。它们的结构代表酯,酰胺,碳酸酯,醚,醇和/或环氧基。确定了那些氧基团与配合物结合的显着选择性。根据这些结果,建立了与Rh *的铑原子结合的优先级列表:环氧化物>伯醇>醚≥酯≥酰胺>碳酸酯>叔醇该序列可以预测在其中的含氧基团的优选结合位点多官能化合物,经常在天然产物中出现,尤其是在此类化合物的不对称合成中。由于在几乎所有情况下都有大量信号分散,因此通过实验容易地完成对映体的区分。

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