Politehnica University of Timisoara, P-ta Victoriei no.2, 300006, Timisoara, Romania.
Analyst. 2012 Feb 7;137(3):641-7. doi: 10.1039/c2an15645h. Epub 2011 Dec 13.
A non-enzymatic direct electrochemical glycerol detection method at a commercial boron-doped diamond (BDD) electrode in 0.1 M NaOH supporting electrolyte was developed. All the used electrochemical techniques proved useful features for the oxidation and direct amperometric determination of glycerol at a BDD electrode in 0.1 M NaOH aqueous solution. It was found that the direct electrooxidation of glycerol on the BDD electrode requires both adsorbed glycerol and hydroxyls at the electrode surface. Also, the sp(2) carbon did not allow enhancement of the glycerol oxidation process. The electronalytical sensitivity for the determination of glycerol at the BDD electrode ranged from 0.040 to 0.226 μA mM(-1) as a function of the technique used. The highest electroanalytical sensitivity for the determination of glycerol at the BDD electrode was reached in batch system amperometric quantification under stirring conditions. Performed recovery studies indicated that it is possible to determine glycerol in real samples, and the proposed batch system analysis-based methodology can be a valuable tool for practical glycerol analysis.
在 0.1 M NaOH 支持电解质中,开发了一种在商业掺硼金刚石(BDD)电极上的非酶直接电化学甘油检测方法。所有使用的电化学技术都证明了在 0.1 M NaOH 水溶液中,BDD 电极上甘油的氧化和直接安培法测定具有有用的特性。研究发现,甘油在 BDD 电极上的直接电氧化需要吸附在电极表面上的甘油和羟基。此外,sp(2)碳不允许增强甘油氧化过程。在 BDD 电极上测定甘油的电子分析灵敏度范围为 0.040 至 0.226 μA mM(-1),这取决于所使用的技术。在搅拌条件下进行批量系统安培定量时,BDD 电极对甘油的测定达到了最高的电分析灵敏度。进行的回收研究表明,有可能在实际样品中测定甘油,并且所提出的基于批量系统分析的方法可以成为实用甘油分析的有用工具。