Strained Dehydro-[2,2]-paracyclophane Enabled Planar Chirality Construction and [2.2]Paracyclophane Functionalization

Xue Zhang, Yi Zhou, Zhi-Xiang Yu, Prof. Dr. Chen-Ho Tung, Prof. Dr. Zhenghu Xu
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Abstract

Planar chirality found tremendous use in many fields, such as chemistry, optics, and materials science. In particular, planar chiral [2.2]paracyclophanes (PCPs) are a type of structurally interesting and practically useful chiral compounds bearing unique electronic and photophysical properties and thus have been widely used in π-stacking polymers, organic luminescent materials, and as a valuable toolbox for developing chiral ligands or organocatalysts. However, the synthesis of chiral PCP derivatives remains a longstanding challenge. Current synthetic methods primarily rely on chiral preparative liquid chromatography separation or chemical and kinetic resolution reactions. Here, we report an enantioconvergent alkynylation of an in situ-formed dehydro-[2,2]-paracyclophane intermediate by asymmetric copper(I) catalysis. This approach enables the efficient synthesis of valuable planar chiral PCP building blocks and heterocycles with good yields and excellent enantioselectivity. The success of this reaction lies in the development of a practical route to access strained dehydro-[2,2]-paracyclophane intermediates, which can also be utilized in various strain-release nucleophilic or cycloaddition reactions to synthesize diverse functionalized PCPs. DFT calculations of this reaction suggest that the enantioselectivity is determined by the aryne complexation with chiral copper(I) acetylide and the subsequent insertion reaction.

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平面手性在化学、光学和材料科学等许多领域都得到了广泛应用。特别是平面手性[2.2]对位环烷(PCPs)是一类结构有趣、实用性强的手性化合物,具有独特的电子和光物理性质,因此被广泛应用于π堆叠聚合物、有机发光材料,以及作为开发手性配体或有机催化剂的宝贵工具箱。然而,手性五氯苯酚衍生物的合成仍然是一项长期挑战。目前的合成方法主要依赖手性制备液相色谱分离或化学和动力学解析反应。在此,我们报告了通过不对称铜(I)催化原位形成的脱氢-[2,2]-副环烷中间体的对映体转化炔化反应。这种方法能够高效合成有价值的平面手性 PCP 构建模块和杂环化合物,并具有良好的产率和出色的对映选择性。该反应的成功之处在于开发出了一条获得应变脱氢-[2,2]-副环烷中间体的实用路线,这些中间体还可用于各种应变释放亲核或环加成反应,以合成各种功能化的五氯苯酚。该反应的 DFT 计算表明,对映体选择性取决于芳炔与手性乙酰化铜(I)的络合以及随后的插入反应。
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来源期刊
Angewandte Chemie
Angewandte Chemie 化学科学, 有机化学, 有机合成
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