College of Chemistry, Chemical Engineering and Materials Science, Zaozhuang University, Zaozhuang, China.
College of Chemical Engineering, Yangzhou Polytechnic Institute, Yangzhou, China.
ChemistryOpen. 2021 Oct;10(10):1074-1080. doi: 10.1002/open.202100197.
The electro-oxidation of formamidine disulfide, an important sulfur-containing compound, was simultaneously investigated with on-line high-performance liquid chromatography and cyclic voltammetry. Using a home-made microporous sampler located at the electrode interface, the solution on the electrode surface was in situ sampled and analyzed. The electrochemical scanning was synchronously performed, which allowed the electro-oxidation products to be detected at a given potential. The main products on the surface of platinum electrode were found to be thiourea, formamidine sulfinic acid, cyanamide, and elemental sulfur. Forced convection arising from the sampling played an important role in the electrochemical oxidation. The extraction of electrode surface solution promoted the renewal of reactant and its intermediates, which induced the change of cyclic voltammetry curve. The forced convection also contributed to the redox peak current of the species on the cyclic voltammetry curves through the change of concentration of reactant and its intermediates. This technique can help to explore the reaction mechanism of complex electrochemical reactions.
采用自制的微孔取样器在电极界面处进行在线取样,同时结合高效液相色谱和循环伏安法对重要含硫化合物甲脒二硫醚的电化学氧化过程进行了研究。在电化学扫描的同时进行在线取样分析,可以在给定的电势下检测到电氧化产物。实验结果表明,在铂电极表面主要生成了硫脲、甲脒亚磺酸、氰胺和单质硫。取样产生的强制对流对电化学氧化过程起着重要的作用。电极表面溶液的萃取促进了反应物及其中间产物的更新,从而改变了循环伏安曲线。强制对流还通过改变反应物及其中间产物的浓度,影响循环伏安曲线上物种的氧化还原峰电流。该技术有助于探索复杂电化学反应的反应机理。