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通过自组装形成动态金-碳σ键实现高效合成[]环对亚苯基(= 9 - 15) 。

Dynamic Au-C σ-Bonds Leading to an Efficient Synthesis of []Cycloparaphenylenes ( = 9-15) by Self-Assembly.

作者信息

Yoshigoe Yusuke, Tanji Yohei, Hata Yusei, Osakada Kohtaro, Saito Shinichi, Kayahara Eiichi, Yamago Shigeru, Tsuchido Yoshitaka, Kawai Hidetoshi

机构信息

Department of Chemistry, Faculty of Science, Tokyo University of Science, 1-3 Kagurazaka,Shinjuku-ku, Tokyo 162-8601, Japan.

Laboratory for Chemistry and Life Science, Institute of Innovative Research, Tokyo Institute of Technology, 4259, Nagatsuta, Midori-ku, Yokohama 226-8503, Japan.

出版信息

JACS Au. 2022 Jul 11;2(8):1857-1868. doi: 10.1021/jacsau.2c00194. eCollection 2022 Aug 22.

Abstract

The transmetalation of the digold(I) complex [AuCl(dcpm)] () (dcpm = bis(dicyclohexylphosphino)methane) with oligophenylene diboronic acids gave the triangular macrocyclic complexes [Au(CH) (dcpm)] ( = 3, 4, 5) with yields of over 70%. On the other hand, when the other digold(I) complex [AuCl(dppm)] () (dppm = bis(diphenylphosphino)methane) was used, only a negligible amount of the triangular complex was obtained. The control experiments revealed that the dcpm ligand accelerated an intermolecular Au(I)-C σ-bond-exchange reaction and that this high reversibility is the origin of the selective formation of the triangular complexes. Structural analyses and theoretical calculations indicate that the dcpm ligand increases the electrophilicity of the Au atom in the complex, thus facilitating the exchange reaction, although the cyclohexyl group is an electron-donating group. Furthermore, the oxidative chlorination of the macrocyclic gold complexes afforded a series of []cycloparaphenylenes ( = 9, 12, 15) in 78-88% isolated yields. The reorganization of two different macrocyclic Au complexes gave a mixture of macrocyclic complexes incorporating different oligophenylene linkers, from which a mixture of []cycloparaphenylenes with various numbers of phenylene units was obtained in good yields.

摘要

二价金(I)配合物[AuCl(dcpm)]()(dcpm = 双(二环己基膦基)甲烷)与低聚亚苯基二硼酸进行金属转移反应,得到了产率超过70%的三角形大环配合物[Au(CH) (dcpm)]( = 3、4、5)。另一方面,当使用另一种二价金(I)配合物[AuCl(dppm)]()(dppm = 双(二苯基膦基)甲烷)时,仅得到了可忽略量的三角形配合物。对照实验表明,dcpm配体加速了分子间Au(I)-C σ键交换反应,且这种高可逆性是选择性形成三角形配合物的原因。结构分析和理论计算表明,尽管环己基是供电子基团,但dcpm配体增加了配合物中Au原子的亲电性,从而促进了交换反应。此外,大环金配合物的氧化氯化反应以78 - 88%的分离产率得到了一系列[]环对亚苯基( = 9、12、15)。两种不同的大环金配合物的重组得到了包含不同低聚亚苯基连接基的大环配合物混合物,从中以良好产率获得了具有不同数量亚苯基单元的[]环对亚苯基混合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b37/9400051/b0a97f98511e/au2c00194_0002.jpg

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