Ngamukot Passapol, Charoenraks Thiraporn, Chailapakul Orawon, Motomizu Shoji, Chuanuwatanakul Suchada
Sensor Research Unit, Department of Chemistry, Faculty of Science, Chulalongkorn University, Phayathai Road, Patumwan, Bangkok 10330, Thailand.
Anal Sci. 2006 Jan;22(1):111-6. doi: 10.2116/analsci.22.111.
An electrooxidation and a cost-effective flow-based analysis of malachite green (MG) and leucomalachite green (LMG) were investigated at a boron-doped diamond thin-film (BDD) electrode. Cyclic voltammetry as a function of the pH of the supporting electrolyte solution was studied. Comparison experiments were performed with a glassy carbon electrode. A well-defined cyclic voltammogram, providing the highest peak current, was obtained when using phosphate buffer at pH 2. The potential sweep-rate dependence of MG and LMG oxidation (peak currents for 1 mM MG and LMG linearly proportional to v 1/2, within the range of 0.01 to 0.3 V/s) indicates that the oxidation current is a diffusion-controlled process on the BDD surface. In addition, hydrodynamic voltammetry and amperometric detection using the BDD electrode combined with a flow injection analysis system was also studied. A homemade flow cell was used, and the results were compared with a commercial flow cell. A detection potential of 0.85 V was selected when using a commercial flow cell, at which MG and LMG exhibited the highest signal-to-background ratios. For the homemade flow cell, a detection potential of 1.1 V was chosen because MG and LMG exhibited a steady response. The flow analysis results showed linear concentration ranges of 1-100 microM and 4-80 microM for MG and LMG, respectively. The detection limit for both compounds was 50 nM.
在硼掺杂金刚石薄膜(BDD)电极上研究了孔雀石绿(MG)和隐色孔雀石绿(LMG)的电氧化及基于流动分析的低成本检测方法。研究了循环伏安法与支持电解质溶液pH值的关系。使用玻碳电极进行了对比实验。当在pH 2的磷酸盐缓冲液中时,可获得定义明确且具有最高峰值电流的循环伏安图。MG和LMG氧化的电位扫描速率依赖性(1 mM MG和LMG的峰值电流与v 1/2在0.01至0.3 V/s范围内呈线性比例)表明氧化电流是BDD表面上受扩散控制的过程。此外,还研究了使用BDD电极结合流动注射分析系统的流体动力学伏安法和安培检测。使用了自制的流通池,并将结果与商用流通池进行了比较。使用商用流通池时选择检测电位为0.85 V,此时MG和LMG表现出最高的信噪比。对于自制流通池,选择检测电位为1.1 V,因为MG和LMG表现出稳定的响应。流动分析结果表明,MG和LMG的线性浓度范围分别为1 - 100 microM和4 - 80 microM。两种化合物的检测限均为50 nM。