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Development of a selective and sensitive colour reagent for gold and silver ions and its application to desktop scanner analysis

机译:用于金银离子的选择性和敏感颜色试剂及其在台式扫描仪分析中的应用

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Desktop scanners can be favorable alternatives to sophisticated spectrophotometers for the assessment of analytes in complex real samples. Distinctively, our method has been thoroughly investigated, optimized, validated and successfully applied to the assessment of silver and gold in complex real samples, applying syringal rhodanine (SR) as a novel specifically tailored chromogenic reagent and using a desktop scanner as a versatile sensor. Maximum colour absorbance was obtained in the presence of cetylpyridinium chloride (CPC) and cetyltrimethylammonium chloride (CTAC) for silver and gold chelates, respectively. For each metal ion, two ternary complexes were formed depending on the SR concentration with stoichiometries of 1 : 1 : 1 and 1 : 2 : 3 (Ag-SR-CPC) and 1 : 2 : 3 and 1 : 3 : 4 (Au-SR-CTAC), respectively. The methods adhered to Beer's law for 0.15-2.5 and 0.15-2.25 mu g mL(-1) with detection limits of 0.0089 and 0.0163 mu g mL(-1) for silver and gold, respectively. The molar absorptivities were 3.63 x 10(4) and 6.15 x 10(4) L mol(-1) cm(-1) at 550 nm and 554 nm, with Sandell's sensitivity indexes of 0.0029 and 0.0032 mu g cm(-2), respectively. The method was successfully applied to the assessment of silver and gold in a wide range of complex environmental samples.
机译:桌面扫描仪可以是复杂分光光度计的良好替代品,用于评估复杂真实样品中的分析物。明显地,我们的方法已经彻底调查,优化,验证和成功应用于复杂的真实样品中的银和金,将rhodanine(SR)应用于新颖的特别定制的发色试剂,并使用台式扫描仪作为多功能传感器。在氯吡啶吡啶(CPC)和氯酰基三甲基氯化甲基铵(CTAc)的存在下,获得最大颜色吸收率,用于银和金螯合物。对于每个金属离子,取决于Sr浓度的2倍络合物,其具有1:1:1和1:2:3(Ag-SR-CPC)和1:2:3和1:3(AU -SR-CTAC)分别。将啤酒定律粘附在0.15-2.5和0.15-2.25μg(-1)中,检测限为0.0089和0.0163μg(-1)的银和金。在550nm和554nm的摩尔吸收率为3.63×10(4)和6.15×10(4)℃(-1)cm(-1),桑德的敏感指数为0.0029和0.0032μgcm(-2) , 分别。该方法成功地应用于广泛的复杂环境样品中的银和金的评估。

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    《RSC Advances》 |2019年第62期|共8页
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  • 正文语种 eng
  • 中图分类 化学;
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