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首页> 外文期刊>Analytica chimica acta >A derivative photoelectrochemical sensing platform for 4-nitrophenolate contained organophosphates pesticide based on carboxylated perylene sensitized nano-TiO2
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A derivative photoelectrochemical sensing platform for 4-nitrophenolate contained organophosphates pesticide based on carboxylated perylene sensitized nano-TiO2

机译:基于羧基化per敏化的纳米TiO2的4-硝基酚酸酯衍生物的光电化学传感平台,包含有机磷酸酯农药

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摘要

A novel visible light sensitized photoelectrochemical sensing platform was constructed based on the perylene-3,4,9,10-tetracarboxylic acid/titanium dioxide (PTCA/TiO2) heterojunction as the photoelectric beacon. PTCA was synthesized via facile steps of hydrolysis and neutralization reaction, and then the PTCA/TiO2 heterojunction was easily prepared by coating PTCA on nano-TiO2 surface. The resulting photoelectric beacon was characterized by transmission electron microscope, scanning electron microscopy, X-ray diffractometry, FTIR spectroscopy, and ultraviolet and visible spectrophotometer. Using parathion-methyl as a model, after a simple hydrolyzation process, p-nitrophenol as the hydrolysate of parathion-methyl could be obtained, the fabricated derivative photoelectrochemical sensor showed good performances with a rapid response, instrument simple and portable, low detection limit (0.08 nmol L~(-1)) at a signal-to-noise ratio of 3, and good selectivity against other pesticides and possible interferences. It had been successfully applied to the detection of parathion-methyl in green vegetables and the results agreed well with that by GC-MS. This strategy not only extends the application of PTCA, but also presents a simple, economic and novel methodology for photoelectrochemical sensing.
机译:以the-3,4,9,10-四羧酸/二氧化钛(PTCA / TiO2)异质结为光电信标,构建了新型的可见光敏化光电化学传感平台。通过水解和中和反应的简便步骤合成PTCA,然后通过在纳米TiO2表面涂覆PTCA容易地制备PTCA / TiO2异质结。通过透射电子显微镜,扫描电子显微镜,X射线衍射法,FTIR光谱,以及紫外可见分光光度计对所得的光电信标进行表征。以甲基对硫磷为模型,经过简单的水解后,即可得到对硝基苯酚为甲基对硫磷的水解产物,所制得的衍生物光电化学传感器具有响应速度快,仪器简便,携带方便,检测限低等优点。信噪比为3时为0.08 nmol L〜(-1)),对其他农药具有良好的选择性和可能的​​干扰。该方法已成功用于绿色蔬菜中甲基对硫磷的检测,其结果与GC-MS吻合良好。该策略不仅扩展了PTCA的应用,而且提出了一种简单,经济,新颖的光电化学传感方法。

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