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首页> 外文期刊>Journal of cluster science >Facile Green Synthesis of Gold Nanoparticles with Carboxymethyl Gum Karaya, Selective and Sensitive Colorimetric Detection of Copper (II) Ions
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Facile Green Synthesis of Gold Nanoparticles with Carboxymethyl Gum Karaya, Selective and Sensitive Colorimetric Detection of Copper (II) Ions

机译:具有羧甲基胶Karaya的金纳米粒子的嵌合绿色合成,铜(II)离子的选择性和敏感的比色性检测

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Herein, we developed a gold nanoparticles (AuNPs) based label free colorimetric probe for the sensitive and selective detection of Copper (II) ions (Cu2+). Fabrication of the detection system involves a single step in which plant derived, nontoxic polysaccharide carboxymethyl gum karaya (CMGK) acts as reducing, stabilizing and functionalizing agent. Synthetic conditions were optimized by using UV-Vis spectra, zeta potential and DLS analysis and as synthesized AuNPs were thoroughly characterized by TEM, FTIR, and XRD analysis. They exhibited excellent stability to conditions like pH, salt and have a longer shelf life. These CMGK capped AuNPs exhibited a selective colorimetric response to Cu2+ ions with a visible colour change from red to blue, which could be due to the Cu2+ induced aggregation and the same was confirmed by TEM and DLS analysis. The detection conditions such as pH, amount of nanoparticles used and incubation time were optimized. Under the optimal detection conditions, the present system exhibited a good linear correlation (R-2 = 0.998) in the range of 10-1000 nM of copper with a limit of detection 10 nM. Further the method was successfully applied for the detection of copper in real water samples and biological samples (human plasma and urine).
机译:在此,我们开发了一种基于金纳米颗粒(AUNP)的基于标记的比色探针,用于铜(II)离子的敏感和选择性检测(Cu2 +)。检测系统的制备涉及一种单一的步骤,其中植物衍生的无毒多糖羧甲基胶Karaya(CMGK)用作还原,稳定和官能化剂。通过使用UV-Vis光谱,Zeta电位和DLS分析优化合成条件,并且通过TEM,FTIR和XRD分析彻底以合成的特征为特征。它们表现出对pH,盐等条件的优异稳定性,并且具有更长的保质期。这些CMGK封端的AUNPS对Cu2 +离子的选择性比色响应具有从红色到蓝色的可见颜色变化,这可能是由于Cu2 +诱导的聚集,并且通过TEM和DLS分析证实了相同的聚集。优化了所用的pH值,纳米颗粒的检测条件和孵育时间。在最佳检测条件下,本系统在10-1000nm铜的范围内表现出良好的线性相关(R-2 = 0.998),其铜的范围为10nm的检测限。此外,该方法已成功地应用于实际水样和生物样品(人血浆和尿液)中的铜检测。

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