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手性三炔[2 + 2 + 2]环异构化中立体选择性的起源:通过热力学因素控制类并苯化合物的螺旋性。

On the origin of diastereoselectivity in [2 + 2 + 2] cycloisomerization of chiral triynes: controlling helicity of helicene-like compounds by thermodynamic factors.

作者信息

Sehnal Petr, Krausova Zuzana, Teplý Filip, Stara Irena G, Starý Ivo, Rulísek Lubomír, Saman David, Císarova Ivana

机构信息

Institute of Organic Chemistry and Biochemistry, Academy of Sciences of the Czech Republic, Flemingovo nAm. 2, 166 10 Prague 6, Czech Republic.

出版信息

J Org Chem. 2008 Mar 21;73(6):2074-82. doi: 10.1021/jo701997p. Epub 2008 Feb 20.

Abstract

Diastereoselective CoI-mediated [2 + 2 + 2] cycloisomerization of CH(3)O-substituted optically pure aromatic triynes to obtain nonracemic functionalized helicene-like compounds (comprising a penta-, hexa-, and heptacyclic helical scaffold) was studied. The stereochemical outcome of the reaction at 140 degrees C using CpCo(CO)(2) was controlled by thermodynamic factors yielding diastereomeric ratios up to 91:9. Using CpCo(ethylene)(2) at room temperature, a kinetic control took place leading to the loss of stereoselectivity. Barriers to epimerization for selected helicene-like compounds were measured indicating their lower configurational stability in comparison to the parent carbohelicenes. Free energy differences between corresponding pairs of diastereomers (calculated at the DFT B3LYP/TZV+P level) were in excellent agreement with the experimental data and allowed for the prediction of the stereochemical outcome of the reaction. An optically pure hexacyclic helicene-like alcohol was prepared on a multigram scale. Its X-ray structure confirmed the previous helicity assignments being based on (1)H-(1)H correlations in ROESY (1)H NMR spectra.

摘要

研究了非对映选择性的CoI介导的CH(3)O取代的光学纯芳香族三炔的[2 + 2 + 2]环异构化反应,以获得非外消旋的官能化类螺旋烯化合物(包含五环、六环和七环螺旋骨架)。使用CpCo(CO)(2)在140℃下反应的立体化学结果受热力学因素控制,非对映体比例高达91:9。在室温下使用CpCo(乙烯)(2)时,发生动力学控制,导致立体选择性丧失。测量了选定的类螺旋烯化合物的差向异构化能垒,表明与母体碳螺旋烯相比,它们的构型稳定性较低。相应的非对映体对之间的自由能差(在DFT B3LYP/TZV+P水平计算)与实验数据非常吻合,并允许预测反应的立体化学结果。以多克规模制备了光学纯的六环类螺旋烯醇。其X射线结构证实了先前基于ROESY (1)H NMR光谱中的(1)H-(1)H相关性的螺旋度归属。

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