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Non-aggregation colorimetric sensor for detecting vitamin C based on surface plasmon resonance of gold nanorods

机译:基于金纳米棒表面等离振子共振的维生素C非聚集比色传感器

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摘要

In this sensing system, vitamin C (Vc) could reduce Hg~(2+) to Hg~0, which selectively deposited on the tips of gold nanorods (AuNRs) to form gold amalgamation due to the shielding effect of the surfactant cetyltrimethylammonium bromide (CTAB) on the transverse site of AuNRs. As a result, the aspect ratio (length/width) of AuNRs was decreased and the morphology of AuNRs was changed. When the concentration of Vc was in the range of 0.11 -85.0 μM, the longitudinal plasmon absorption wavelength (LPAW, λ_L) blue shifted (△λ_L); while in the range of 85.0-385 μM, the transversal plasmon absorption wavelength (TPAW, λ_T) red shifted (△λ_T) gradually, as well as the color of the solution changed obviously. Thus, a non-aggregation colorimetric sensor for rapid determination of Vc has been developed. The detection limit (LD) of this sensor is 3.5 × 10~(-9)g Vc mL~(-1) for λ_L and 5.1 × 10~(-6)g Vc mL~(-1) for λ_T, respectively, which is much lower than that of aggregation colorimetric sensor, showing its great sensitivity. What's more, the sensor has been applied to the detecting of Vc in real samples with the results agreeing well with aggregation colorimetric sensor using λ_L, showing its great practicality. At the same time, the structures of AuNRs were characterized by transmission electron microscope (TEM), and the sensing mechanism for the detection of Vc has been discussed.
机译:在该传感系统中,维生素C(Vc)可以将Hg〜(2+)还原为Hg〜0,由于表面活性剂十六烷基三甲基溴化铵的屏蔽作用,维生素C(Vc)选择性沉积在金纳米棒(AuNRs)的尖端上以形成金汞齐。 CTAB)在AuNRs的横向位置上。结果,AuNRs的长宽比(长度/宽度)降低并且AuNRs的形态改变。当Vc的浓度在0.11 -85.0μM的范围内时,纵向等离激元吸收波长(LPAW,λ_L)蓝移(△λ_L);而在85.0-385μM范围内,横向等离激元吸收波长(TPAW,λ_T)逐渐红移(△λ_T),溶液的颜色也发生了明显变化。因此,已经开发了用于快速确定Vc的非聚集比色传感器。该传感器的检出限(LD)对于λ_L为3.5×10〜(-9)g Vc mL〜(-1),对于λ_T为5.1×10〜(-6)g Vc mL〜(-1),远低于聚合比色传感器,显示出极高的灵敏度。此外,该传感器已应用于实际样品中的Vc的检测,其结果与使用λ_L的聚集比色传感器非常吻合,显示了其巨大的实用性。同时,用透射电子显微镜(TEM)对AuNRs的结构进行了表征,并探讨了检测Vc的传感机理。

著录项

  • 来源
    《Sensors and Actuators》 |2013年第6期|205-210|共6页
  • 作者单位

    Department of Chemistry and Environmental Science, Zhangzhou Normal College, Zhangzhou 363000, PR China;

    Department of Chemistry and Environmental Science, Zhangzhou Normal College, Zhangzhou 363000, PR China;

    Department of Chemistry and Environmental Science, Zhangzhou Normal College, Zhangzhou 363000, PR China,Fujian Provincial Bureau of Quality and Technical Supervision, Zhangzhou 363000, PR China;

    Department of Chemistry and Environmental Science, Zhangzhou Normal College, Zhangzhou 363000, PR China;

    Department of Chemistry and Environmental Science, Zhangzhou Normal College, Zhangzhou 363000, PR China;

    Department of Chemistry and Environmental Science, Zhangzhou Normal College, Zhangzhou 363000, PR China;

    Department of Chemistry and Environmental Science, Zhangzhou Normal College, Zhangzhou 363000, PR China;

    Department of Food and Biological Engineering, Zhangzhou Institute of Technology, Zhangzhou 363000, PR China;

    Department of Food and Biological Engineering, Zhangzhou Institute of Technology, Zhangzhou 363000, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cold nanorods; Surface plasmon resonance; Non-aggregation colorimetric sensor; Vitamin C;

    机译:冷纳米棒;表面等离子体共振;非聚集比色传感器;维生素C;

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