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EPR and DFT Study of the Polycyclic Aromatic Radical Cations from Friedel-Crafts Alkylation Reactions

EPR and DFT Study of the Polycyclic Aromatic Radical Cations from Friedel-Crafts Alkylation Reactions

  • 摘要: 利用电子顺磁共振和电子核双共振技术在间二甲苯与氯代烷烃和对二甲苯与氯代烷烃进行付-克烷基化反应体系中分别检测到二个多核芳烃正离子自由基信号.研究结果表明,所观察到顺磁共振信号分别来自于2,6-二甲基蒽正离子和1,4,5,8-四甲基蒽自由基的贡献.提出了这二个自由基的生成是在付-克烷基化反应中生成的氯代芳基在AlCl3存在下发生Scholl缩合反应生成多核芳烃,后者发生单电子氧化转变为相应的多核芳烃正离子自由基。利用密度泛函理论计算了这两个自由基的超精细偶合常数,与实验值符合相当满意,从理论上支持了对实验超精细谱线的归属.

     

    Abstract: Electron paramagnetic resonance and electron-nuclear double resonance methods were used to study the polycyclic aromatic radical cations produced in a Friedel-Crafts alkylating sys-tem, with m-xylene, or p-xylene and alkyl chloride. The results indicate that the observed electron paramagnetic resonance spectra are due to polycyclic aromatic radicals formed from the parent hydrocarbons. It is suggested that benzyl halides produced in the Friedel-Crafts alkylation reactions undergo Scholl self-condensation to give polycyclic aromatic hydrocarbons, which are converted into corresponding polycyclic aromatic radical cations in the presence of AlCl3. The identiˉcation of observed two radicals 2,6-dimethylanthracene and 1,4,5,8-tetramethylanthracene were supported by density functional theory calculations using the B3LYP/6-31G(d,p)//B3LYP/6-31G(d) approach. The theoretical coupling constantssupport the experimental assignment of the observed radicals.

     

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