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八氮杂并苯及其具有不同双自由基特征和化学反应性的异构体:桥结构的作用

Octazethrene and Its Isomer with Different Diradical Characters and Chemical Reactivity: The Role of the Bridge Structure.

作者信息

Hu Pan, Lee Sangsu, Park Kyu Hyung, Das Soumyajit, Herng Tun Seng, Gonçalves Théo P, Huang Kuo-Wei, Ding Jun, Kim Dongho, Wu Jishan

机构信息

Department of Chemistry, National University of Singapore , 3 Science Drive 3, 117543 Singapore.

Spectroscopy Laboratory for Functional π-Electronic Systems and Department of Chemistry, Yonsei University , Seoul 120-749, Korea.

出版信息

J Org Chem. 2016 Apr 1;81(7):2911-9. doi: 10.1021/acs.joc.6b00172. Epub 2016 Mar 21.

Abstract

The fundamental relationship between structure and diradical character is important for the development of open-shell diradicaloid-based materials. In this work, we synthesized two structural isomers bearing a 2,6-naphthoquinodimethane or a 1,5-naphthoquinodimethane bridge and demonstrated that their diradical characters and chemical reactivity are quite different. The mesityl-or pentafluorophenyl-substituted octazethrene derivatives OZ-M/OZ-F and their isomer OZI-M (with mesityl substituents) were synthesized via an intramolecular Friedel-Crafts alkylation followed by oxidative dehydrogenation strategy from the key building blocks 4 and 11. Our detailed experimental and theoretical studies showed that both isomers have an open-shell singlet ground state with a remarkable diradical character (y0 = 0.35 and 0.34 for OZ-M and OZ-F, and y0 = 0.58 for OZI-M). Compounds OZ-M and OZ-F have good stability in an ambient environment, while OZI-M has high reactivity and can be easily oxidized to a dioxo product 15, which can be correlated to their different diradical characters. Additionally, we investigated the physical properties of OZ-M, OZ-F, and 15.

摘要

结构与双自由基特性之间的基本关系对于基于开壳双自由基类材料的开发至关重要。在这项工作中,我们合成了两种带有2,6-萘醌二甲烷或1,5-萘醌二甲烷桥的结构异构体,并证明它们的双自由基特性和化学反应性有很大差异。通过分子内傅克烷基化反应,然后从关键结构单元4和11出发采用氧化脱氢策略合成了均三甲苯基或五氟苯基取代的八氮杂芘衍生物OZ-M/OZ-F及其异构体OZI-M(带有均三甲苯基取代基)。我们详细的实验和理论研究表明,两种异构体均具有开壳单重基态,具有显著的双自由基特性(OZ-M和OZ-F的y0分别为0.35和0.34,OZI-M的y0为0.58)。化合物OZ-M和OZ-F在环境条件下具有良好的稳定性,而OZI-M具有高反应活性,可容易地氧化为二氧代产物15,这与其不同的双自由基特性相关。此外,我们研究了OZ-M、OZ-F和15的物理性质。

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