Chen Pei-Yen, Yangi Hsueh-Hui, Zen Jyh-Myng, Shih Ying
Providence University, Department of Cosmetic Science, Taichung 433, Taiwan.
J AOAC Int. 2011 Sep-Oct;94(5):1585-91. doi: 10.5740/jaoacint.10-378.
A flow injection analysis coupled with electrochemical detection at an activated barrel plating nickel electrode (Ni-BPE) was developed as a sensitive, simple, and low-cost formaldehyde sensor. The mechanism of Ni-BPE toward the electrocatalytic oxidation of formaldehyde in alkaline medium at ambient temperature was proposed to be based on the electrocatalytic oxidation of formaldehyde by Ni(III)O(OH) species. Under the optimized conditions (flow rate = 1.2 mL/min; detection potential = +0.5 V versus Ag/AgCl), a good linearity in the window of 0.037 to 10 microg/mL formaldehyde was observed, and the LOD of 0.23 microg/L was calculated. The RSDs of intraday (n = 10) and interday (n = 6) replicate measurements of 0.185-5 microg/mL formaldehyde ranged from 1.45 to 3.60%, indicating good reproducibility of the proposed method. The proposed method was successfully applied to the determination of formaldehyde in commercial nail polish samples and a drinking water sample.
开发了一种流动注射分析方法,结合在活化滚镀镍电极(Ni-BPE)上的电化学检测,作为一种灵敏、简单且低成本的甲醛传感器。提出在室温下,Ni-BPE在碱性介质中对甲醛进行电催化氧化的机理是基于Ni(III)O(OH)物种对甲醛的电催化氧化。在优化条件下(流速 = 1.2 mL/min;检测电位相对于Ag/AgCl为 +0.5 V),在0.037至10 μg/mL甲醛范围内观察到良好的线性关系,计算得出检测限为0.23 μg/L。对0.185 - 5 μg/mL甲醛进行日内(n = 10)和日间(n = 6)重复测量的相对标准偏差范围为1.45%至3.60%,表明该方法具有良好的重现性。所提出的方法成功应用于商业指甲油样品和饮用水样品中甲醛的测定。