Ferreira Santos Mauro Sérgio, Silva Lopes Fernando, Gutz Ivano Gebhardt Rolf
Departamento de Química Fundamental, Instituto de Química, Universidade de São Paulo, São Paulo, SP, Brazil.
Electrophoresis. 2017 Nov;38(21):2725-2732. doi: 10.1002/elps.201700124. Epub 2017 May 26.
An EC-CE-C D flow system was applied to the investigation of electrocatalytic processes by monitoring carboxylic acids formed during the electro-oxidation at various potentials of primary alcohols (mixture of 1 mmol/L of ethanol, n-propanol, n-butanol and n-pentanol) in acidic, neutral and alkaline media. The electro-oxidation was carried out on gold and platinum disk electrodes (3 mm of diameter) in a thin-layer electrochemical flow cell. Products were sampled 50 μm apart from the electrode directly into the capillary. All the generated carboxylates were determined in near real time (less than 2 min) by CE-C D in counter-flow mode, with Tris/HCl buffer solution (pH 8.6) as BGE. Long sequences of 5-min experiments were run automatically, exploring the applied potential, electrolysis time and solution composition. Electro-oxidation at 1.5 V (versus Ag/AgCl quasi-reference) during 50 s in acidic medium was found appropriate for both Pt and Au electrodes when the determination of alcohols after derivatization is intended. A noteworthy selectivity effect was observed on the Au electrode. The signal corresponding to pentanoate is similar on both electrodes while the signal of ethanoate (acetate) is four times larger on gold than on platinum. The carboxylate signals were lower in alkaline medium (below the determination limit on Pt) than in acidic and neutral media. On gold, the formation of carboxylates was anticipated (0.85 V in alkaline medium versus 1.40 V in neutral medium). The automatic online monitoring of electrochemical processes by EC-CE-C D holds great potential to investigate ionic/ionizable intermediates/products of new electrocatalysts and/or alternative fuels.
采用电化学-毛细管电泳-电容耦合检测(EC-CE-CD)流动系统,通过监测在酸性、中性和碱性介质中,伯醇(1 mmol/L乙醇、正丙醇、正丁醇和正戊醇的混合物)在不同电位下电氧化过程中形成的羧酸,来研究电催化过程。电氧化在薄层电化学流动池中直径为3 mm的金盘电极和铂盘电极上进行。产物从电极起每隔50μm直接取样到毛细管中。所有生成的羧酸盐通过CE-CD以逆流模式在Tris/HCl缓冲溶液(pH 8.6)作为背景电解质的条件下进行近实时(小于2分钟)测定。自动运行5分钟的长序列实验,探索施加电位、电解时间和溶液组成。当打算对衍生化后的醇进行测定时,发现在酸性介质中于1.5 V(相对于Ag/AgCl准参比电极)下进行50 s的电氧化对Pt和Au电极均适用。在Au电极上观察到了显著的选择性效应。戊酸盐对应的信号在两个电极上相似,而乙酸盐的信号在金电极上比在铂电极上大四倍。羧酸盐信号在碱性介质中(低于Pt上测定限)比在酸性和中性介质中低。在金电极上,羧酸盐的形成电位提前(碱性介质中为0.85 V,中性介质中为1.40 V)。通过EC-CE-CD对电化学过程进行自动在线监测,在研究新型电催化剂和/或替代燃料的离子/可电离中间体/产物方面具有巨大潜力。