首页> 外文期刊>RSC Advances >Gum acacia-based silver nanoparticles as a highly selective and sensitive dual nanosensor for Hg(ii) and fluorescence turn-off sensor for S2- and malachite green detection
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Gum acacia-based silver nanoparticles as a highly selective and sensitive dual nanosensor for Hg(ii) and fluorescence turn-off sensor for S2- and malachite green detection

机译:基于牙龈基的银纳米粒子作为高精度和敏感的双纳米传感器,用于HG(II)和S2和孔雀石绿色检测的荧光关断传感器

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摘要

A facile and green method was adopted to synthesize highly selective gum acacia-mediated silver nanoparticles as dual sensor (fluorescence turn-on and colorimetric) for Hg(ii) and fluorescence turn-off sensor for S2- and malachite green. The mechanism proposed for a dual response towards Hg(ii) is the redox reaction between Ag(0) and Hg(ii), resulting in the formation of Ag(i) and Hg(0) and electron transfer from gum acacia to Ag(i), which further leads to the formation of an Ag@Hg nanoalloy. The enhanced fluorescence signal was quenched selectively by S2- owing to the formation of Ag2S and HgS. The reported nanosensor was found to be useful for sensing malachite green via the inner filter effect. The linear ranges were 3 nmol L-1 to 13 mu mol L-1 for Hg(ii), 3-170 mu mol L-1 for S2- and 7-80 mu mol L-1 for malachite green, and the corresponding detection limits were 2.1 nmol L-1 for Hg(ii), 1.3 mu mol L-1 for S2- and 1.6 mu mol L-1 for malachite green.
机译:采用容易和绿色的方法将高选择性的牙龈介导的银纳米颗粒合成为用于HG(II)的双传感器(荧光导孔和比色),以及用于S2和孔雀石绿的荧光关断传感器。 用于HG(II)的双重反应所提出的机制是Ag(0)和Hg(II)之间的氧化还原反应,导致Ag(I)和Hg(0)的形成,并从牙龈的电子转移到Ag( i),进一步导致形成AG @ HG NaNoolloy。 由于Ag2s和Hgs的形成,通过S2选择性地淬灭增强的荧光信号。 发现报告的纳米传感器通过内部滤波器效果可用于检测孔雀石绿色。 用于HG(II)的线性范围为3 Nmol L-1至13μmolL-1,对于孔雀石绿的S2和7-80μmolL-1,3-170μmolL-1,以及对应的检测 限制为Hg(II)的2.1 nmol L-1,对于孔基石绿色的S2和1.6μmolL-1为1.3μmoll-1。

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  • 来源
    《RSC Advances》 |2020年第6期|共8页
  • 作者单位

    Aligarh Muslim Univ Dept Chem Div Inorgan Chem Aligarh 202002 Uttar Pradesh India;

    Aligarh Muslim Univ Dept Chem Div Inorgan Chem Aligarh 202002 Uttar Pradesh India;

    Aligarh Muslim Univ Dept Chem Div Inorgan Chem Aligarh 202002 Uttar Pradesh India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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