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The Detection of Cu~(2+) Ions Using Paper-Based Silver Nanoparticles as a Colorimetry Indicator

机译:用纸型银纳米颗粒作为比色指示剂检测Cu〜(2+)离子的检测

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The detection of chemical pollution in an ecosystem requires rapid and accurate analysis in the field. The method presented here can help minimize preparation time and simple detection of the metal ions. Silver nanoparticles are known for their surface plasmon resonance characteristics that visibly display distinctive colors; this makes it possible to develop as colorimetric indicators. In this study, silver nanoparticles were synthesized on paper using velvet apple (Diospyros discolor Willd.) leaf extract as the Ag~+ reducing agent. The paper was immersed in the water extract for 1 hour and for 24 hours. The formation of silver nanoparticles was indicated by the change in the paper's color from white to light brown and dark brown. Furthermore, the paper was tested using several types of metal ions, namely, Cu~(2+), Mn~(2+), Pb~(2+), Zn~(2+), Mg~(2+)·Ni~(2+) and Co~(2+). For all types of metal ions, the paper's color changed selectively while detecting Cu~(2+) ions. The paper-based silver nanoparticles were sensitive enough to detect Cu~(2+) ions starting at concentrations of 100 mg/L. The Transmission Electron Microscope (TEM) revealed that the silver nanoparticles tended to aggregate after the addition of Cu~(2+) ions, which caused changes in the size and LSPR of the nanoparticles. This potential method needs further refinement and development to enhance the sensitivity of the paper-based colorimetric indicator, so that it can detect Cu~(2+) at lower concentrations.
机译:在生态系统中检测化学污染在该领域需要快速准确地进行分析。这里提出的方法可以有助于最小化制备时间和对金属离子的简单检测。已知银纳米颗粒,用于其表面等离子体共振特性,可明显呈现独特的颜色;这使得可以发展为比色指示器。在该研究中,使用天鹅绒苹果(Diospyros Discoloror Willd。)叶提取物作为Ag〜+还原剂在纸上合成银纳米颗粒。将纸张浸入水提取物中1小时并24小时。通过纸张颜色的变化表明银纳米粒子的形成,呈白色到浅棕色和深棕色。此外,使用几种类型的金属离子,即Cu〜(2+),Mn〜(2+),Pb〜(2+),Zn〜(2+),Mg〜(2+)· ni〜(2+)和co〜(2+)。对于所有类型的金属离子,纸张的颜色选择性地改变,同时检测Cu〜(2+)离子。纸型银纳米颗粒足够敏感以检测以100mg / L的浓度开始的Cu〜(2+)离子。透射电子显微镜(TEM)显示,在加入Cu〜(2+)离子后,银纳米颗粒倾向于聚集,这导致纳米颗粒的大小和LSPR的变化。该潜在方法需要进一步改进和开发以增强纸基比例的敏感性,使其可以在较低浓度下检测Cu〜(2+)。

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