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Colorimetric Detection of Sulfide Anions via Redox-Modulated Surface Chemistry and Morphology of Au-Hg Nanorods

机译:通过氧化氢调制表面化学和Au-HG纳米棒的形态学对硫化物阴离子的比色测量

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A new colorimetric assay for the detection of sulfide anions with high sensitivity and selectivity is reported, utilizing Au-Hg alloy nanorods (Au-HgNRs) as probe. Au-HgNRs were prepared by modifying gold nanorods (AuNRs) with reducing agent and mercury ions. In an aqueous solution with sulfide anions, the formation of mercuric sulfide due to redox reaction between the amalgams and sulfide anions greatly changed the surface chemistry and morphology of the Au-HgNRs, leading to a red shift of the localized surface plasmon resonance (LSPR) absorption peak, accompanied by a change in colorimetric response. A good linear relationship was obtained between the LSPR peak wavelength shift and concentration of sulfide anion in the range of 1 × 10?5?1 × 10?4?mol/L. The selectivity of this method has been investigated by other anions. The colorimetric sensing system successfully detected sulfide in wastewater from leather industry.
机译:报告了用于检测具有高灵敏度和选择性的硫化物阴离子的新比色测定,利用Au-Hg合金纳米棒(Au-HgnR)作为探针。通过用还原剂和汞离子改性金纳米棒(AUNR)来制备Au-HGNR。在硫化物阴离子的水溶液中,由于汞甘汞和硫化物阴离子之间的氧化还原反应形成硫化钠的形成大大改变了Au-hgnrs的表面化学和形态,导致局部表面等离子体共振的红色偏移(LSPR)吸收峰值,伴随着比色响应的变化。在LSPR峰值波长偏移和硫化物阴离子的浓度之间获得良好的线性关系,在1×10?5?1×10?4?mol / L之间。其他阴离子研究了该方法的选择性。比色感测系统从皮革工业中成功地检测到废水中的硫化物。

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