Department of Chemistry, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand.
Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand.
Talanta. 2016 Jan 1;146:766-71. doi: 10.1016/j.talanta.2015.06.026. Epub 2015 Jun 14.
Flow injection amperometric (FI-Amp) sensor was developed for sensitive and selective determination of hydroquinone. A simple screen printed carbon electrode (SPCE) was modified with various nanomaterials for improvement of sensitivity on the determination of quinone. As a result, the appropriate sensitivity is obtained from the SPCE modified with carbon nanotube (CNT) which indicated that CNT contributed to the transfer of electron to quinone. The reproducibility (n=9) and repeatability (n=111) of SPCE-CNT were obtained at 4.4% and 3.6%RSD, respectively. The SPCE-CNT electrode and enzymatic column were incorporated to the FI-Amp system to determine hydroquinone. Laccase was immobilized on silica gel using a cross-linking method by glutaraldehyde modification and then packed in the column. The laccase column has high efficiency for catalytic oxidation of hydroquinone to quinone, which further detects by amperometric detection. Parameters affecting response of the proposed sensor, i.e., pH, ionic strength, and temperature have been optimized. The proposed system provided a wide linear range between 1 and 50 µM with detection limit of 0.1 µM. Satisfactory recoveries in the range of 91.2-103.8% were obtained for the analysis of water sample.
流动注射安培(FI-Amp)传感器被开发用于对氢醌进行灵敏和选择性的测定。各种纳米材料被修饰到简单的丝网印刷碳电极(SPCE)上,以提高对醌测定的灵敏度。结果,从修饰有碳纳米管(CNT)的 SPCE 获得了适当的灵敏度,这表明 CNT 有助于电子向醌的转移。SPCE-CNT 的重现性(n=9)和重复性(n=111)分别为 4.4%和 3.6%RSD。SPCE-CNT 电极和酶柱被合并到 FI-Amp 系统中以测定氢醌。漆酶通过戊二醛修饰的交联方法固定在硅胶上,然后填充在柱中。漆酶柱对氢醌的催化氧化具有高效性,进一步通过安培检测进行检测。优化了影响所提出传感器响应的参数,即 pH、离子强度和温度。该系统在 1 至 50 μM 的宽线性范围内提供了检测限为 0.1 μM 的检测限。对于水样的分析,在 91.2-103.8%的范围内获得了令人满意的回收率。