Streeter Ian, Wain Andrew J, Thompson Mary, Compton Richard G
Physical and Theoretical Chemistry Laboratory, Oxford University, South Parks Road, Oxford OX1 3QZ, United Kingdom.
J Phys Chem B. 2005 Jun 30;109(25):12636-49. doi: 10.1021/jp058064p.
An in situ electrochemical electron spin resonance (ESR) study on the electro-oxidation of para-chloroaniline, para-bromoaniline, and para-iodoaniline dissolved in acetonitrile at gold electrodes is reported. ESR spectra obtained using a tubular flow cell reveal the presence of a paramagnetic dimer product derived from para-aminodiphenylamine, during oxidative electrolysis, suggesting the coupling of reactive electrogenerated radical cations with neutral parent haloaniline molecules. The ESR signal intensity behaves in a manner expected for a radical species reacting with second-order kinetics, suggesting the paramagnetic dimer is, itself, unstable. The theory describing the ESR signal intensity flow rate behavior for this reaction mechanism is developed for the tubular arrangement and used to extract mechanistic and kinetic data from the experimental results for the cases of para-chloroaniline and para-bromoaniline. Further mechanistic aspects, including proton and halide ion expulsion during dimerization, are explored voltammetrically and with the aid of digital simulations using Digisim. Comparison of the ESR signal and voltammetric measurements suggests that an additional mechanism operates which does not lead to paramagnetic products. Additionally, the in situ electrolysis of N,N-dimethyl-para-bromoaniline is reported to generate the stable radical cation of N,N,N',N'-tetramethylbenzidine, and a mechanism of electro-oxidation is, thus, proposed.
报道了一项关于溶解在乙腈中的对氯苯胺、对溴苯胺和对碘苯胺在金电极上进行电氧化的原位电化学电子自旋共振(ESR)研究。使用管状流动池获得的ESR光谱显示,在氧化电解过程中存在一种由对氨基二苯胺衍生的顺磁性二聚体产物,这表明反应性电生成的自由基阳离子与中性母体卤代苯胺分子发生了偶联。ESR信号强度的表现符合自由基物种以二级动力学反应的预期,这表明顺磁性二聚体本身是不稳定的。针对管状装置,推导了描述该反应机理的ESR信号强度与流速关系的理论,并用于从对氯苯胺和对溴苯胺的实验结果中提取机理和动力学数据。通过伏安法并借助Digisim进行数字模拟,进一步探讨了包括二聚化过程中质子和卤离子排出在内的更多机理方面。ESR信号与伏安测量结果的比较表明,存在一种不会产生顺磁性产物的额外机理。此外,据报道,N,N-二甲基-对溴苯胺的原位电解会生成N,N,N',N'-四甲基联苯胺的稳定自由基阳离子,并由此提出了一种电氧化机理。