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Efficient chemiluminescence by aptamer - reactant platform combination with activated Ag-Au alloy nanoparticles for cobalt detection

机译:适体-反应物平台与活化Ag-Au合金纳米粒子相结合进行钴化学检测的高效化学发光。

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This article deals with the detection of Co(II) in real water sample using aptamer - reactant platform combination with activated Ag-Au alloy nanoparticles (NPs) by chemiluminescence (CL) method. CL is attributed to a catalytically enhanced decomposition of H2O2 by aptamer conjugated Ag-Au alloy NPs to produce reactive oxygen species. The Ag-Au alloy NPs were prepared by chemical method using double reducing agent (i.e. trisodium citrate and polyethylenimine) and used for detection of Co(II) from water by CL method. CL experiments were carried out with the variation of different parameters such as pH, concentration of luminol, concentration of H2O2 and Ag-Au alloy NPs. We found that Ag-Au alloy NPs have very good efficiency towards Co(II) detection. Analytical parameters and kinetics were studied in detail to know the nature and mechanism of CL in presence of aptamer conjugated Ag-Au alloy NPs. The linear range of the CL sensor of Co(II) is covered concentration from 0.01 to 10 mu g/L with detection limit of 0.001 mu g/L. The relative standard deviation for determination of Co(II) was 6.65 in 10 replicated measurements. CL method is first time applied to detect the Co(II) in real water samples at very low level using aptamer conjugated Ag-Au NPs as a catalyst.
机译:本文涉及通过化学发光(CL)方法使用适体-反应物平台与活化的Ag-Au合金纳米颗粒(NPs)结合检测真实水样中的Co(II)。 CL归因于适体共轭的Ag-Au合金NP对H2O2的催化增强分解,从而产生活性氧。使用双还原剂(即柠檬酸三钠和聚乙烯亚胺)通过化学方法制备了Ag-Au合金NP,并通过CL方法将其用于检测水中的Co(II)。进行了CL实验,并改变了不同的参数,例如pH,鲁米诺浓度,H2O2和Ag-Au合金NPs的浓度。我们发现Ag-Au合金NP对Co(II)的检测具有非常好的效率。详细研究了分析参数和动力学,以了解在适体缀合的Ag-Au合金NPs存在下CL的性质和机理。 Co(II)的CL传感器的线性范围为0.01至10μg / L的浓度范围,检测极限为0.001μg / L。 10次​​重复测量中用于测定Co(II)的相对标准偏差为6.65。首次采用CL方法,以适体共轭的Ag-Au NPs为催化剂,以极低的水平检测实际水样中的Co(II)。

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