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A fast and simple method to perform cyanide detection using ATP stabilized gold nanoparticles combined with the Cu(DDTC)2 complex

机译:使用ATP稳定的金纳米粒子与Cu(DDTC)2配合物进行快速,简单的氰化物检测方法

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A method has been developed for the determination of cyanide using gold nanoparticles stabilized with adenosine triphosphate (ATP), and in the presence of the Cu(DDTC)2 complex. Cyanide reacts with copper, and free diethyldithiocarbamate (DDTC) causes nanoparticle aggregation. The reaction was performed in a buffered medium (10 mM phosphate + 0.1 M NaCl) by mixing stabilized gold nanoparticles (1.27 ?— 10a?’9 M; 19.2 ?± 4.0 nm), the Cu(DDTC)2 complex and cyanide solutions. The influences of the measurement time after the addition of cyanide, the pH of the reaction medium and the concentration of the complex were evaluated. The selected conditions were: time = 1 min, [Cu(DDTC)2] = 0.1 ??M and pH = 10.4. The analytical performance of the assay was studied, with a LOD of 0.059 mg La?’1 which is under the level proposed by the USEPA for drinking water (0.2 mg La?’1).
机译:已经开发了一种使用三磷酸腺苷(ATP)稳定化的金纳米颗粒并在Cu(DDTC)2络合物存在下测定氰化物的方法。氰化物与铜反应,游离的二乙基二硫代氨基甲酸酯(DDTC)引起纳米粒子聚集。通过混合稳定的金纳米颗粒(1.27?-10a?9M; 19.2?±4.0 nm),Cu(DDTC)2络合物和氰化物溶液,在缓冲介质(10 mM磷酸盐+ 0.1 M NaCl)中进行反应。评估了添加氰化物后测量时间,反应介质的pH值和配合物浓度的影响。选择的条件是:时间= 1分钟,[Cu(DDTC)2] =0.1ΩM,pH = 10.4。研究了该分析方法的分析性能,其LOD为0.059 mg La?1,低于USEPA提出的饮用水标准(0.2 mg La?1)。

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