Jayasri D, Narayanan S Sriman
Department of Analytical Chemistry, University of Madras, Guindy Campus, Chennai 600025, India.
J Hazard Mater. 2007 Jun 1;144(1-2):348-54. doi: 10.1016/j.jhazmat.2006.10.038. Epub 2006 Oct 18.
Fabrication, characterization and application of a manganese hexacyanoferrate (MnHCF) modified graphite-wax composite electrode are described. The MnHCF mixed with graphite powder was dispersed into molten paraffin wax to yield a conductive composite, which was used as electrode material to construct a renewable three-dimensional MnHCF modified electrode. The characterization of the modified electrode has been studied by electrochemical techniques. The cyclic voltammogram of the MnHCF modified graphite-wax composite electrode prepared under optimum composition, showed a well-defined redox couple due to Fe(CN)(6)(4-)/Fe(CN)(6)(3-) system. The electrocatalytic oxidation of hydrazine by MnHCF modified graphite-wax composite electrode has been investigated in an attempt to develop a new sensor for its determination. It was found that the mediator catalyzed the oxidation of hydrazine. The electrocatalytic oxidation of hydrazine was also studied under hydrodynamic and chronoamperometric conditions. The anodic current increases linearly with increase in the concentration of hydrazine in the range of 3.33x10(-5)M to 8.18x10(-3)M. The detection limit was found to be 6.65x10(-6)M (S/N=3). The modified electrode can also be used for on-line detection of hydrazine. The proposed method has also been applied for the determination of hydrazine in photographic developer solution.
描述了一种六氰合铁酸锰(MnHCF)修饰的石墨 - 蜡复合电极的制备、表征及应用。将MnHCF与石墨粉混合后分散到熔融的石蜡中,得到一种导电复合材料,该材料用作电极材料构建了一种可再生的三维MnHCF修饰电极。采用电化学技术对修饰电极进行了表征研究。在最佳组成条件下制备的MnHCF修饰石墨 - 蜡复合电极的循环伏安图显示,由于Fe(CN)(6)(4 - )/Fe(CN)(6)(3 - )体系,出现了明确的氧化还原对。研究了MnHCF修饰石墨 - 蜡复合电极对肼的电催化氧化,试图开发一种用于测定肼的新型传感器。发现该媒介体催化了肼的氧化。还在流体动力学和计时电流法条件下研究了肼的电催化氧化。在3.33×10(-5)M至8.18×10(-3)M范围内,阳极电流随肼浓度的增加呈线性增加。检测限为6.65×10(-6)M(S/N = 3)。该修饰电极还可用于肼的在线检测。所提出的方法也已应用于显影液中肼的测定。