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基于局域表面等离子体共振光散射的体系中形成的银纳米粒子对氢醌的传感检测。

A localized surface plasmon resonance light scattering-based sensing of hydroquinone via the formed silver nanoparticles in system.

机构信息

College of Chemical Engineering, Shijiazhuang University, Shijiazhuang 050035, People's Republic of China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2011 Sep;79(5):2012-6. doi: 10.1016/j.saa.2011.04.025. Epub 2011 Apr 21.

Abstract

In this contribution, a simple strategy for the detection of hydroquinone (HQ) is proposed based on the localized surface plasmon resonance light scattering (LSPR-LS) of the silver nanoparticles (AgNPs) formed through the modified silver mirror reaction. The redox reaction between HQ and silver ammonia occurred in the coexistence of sodium hydroxide and ammonia at room temperature, where silver ammonia was reduced by HQ and resulted in the formation of AgNPs without adding the AgNPs seeds. The formed AgNPs were demonstrated to be monodisperse and uniform by transmission electron microscopy (TEM) image. We also studied the localized surface plasmon resonance absorption (LSPR-A) and LSPR-LS spectra using both a UV-vis spectrophotometer and a common spectrofluorometer, and obtained a good agreement between experiments. By carefully optimizing the amount of NaOH and ammonia of the reaction conditions, we were able to obtain the highest net intensity of LSPR-LS on the concentrations of HQ. On the basis of experimental studies, the LSPR-LS intensity enhanced linearly over the range 0.4-2.5 μmol L(-1) with the corresponding limits of determination (3σ) of 70.6 nmol L(-1). With that, the present approach was applied to detect HQ in water samples with satisfactory results.

摘要

在本研究中,提出了一种基于银纳米粒子(AgNPs)局域表面等离子体共振光散射(LSPR-LS)的简单检测对苯二酚(HQ)的策略。HQ 与银氨之间的氧化还原反应发生在室温下氢氧化钠和氨共存的情况下,其中 HQ 将银氨还原,而无需添加 AgNPs 种子即可形成 AgNPs。TEM 图像表明形成的 AgNPs 是单分散且均匀的。我们还使用紫外可见分光光度计和普通分光光度计研究了局域表面等离子体共振吸收(LSPR-A)和 LSPR-LS 光谱,并获得了实验之间的良好一致性。通过仔细优化反应条件的 NaOH 和氨的量,我们能够在 HQ 的浓度上获得最高的 LSPR-LS 净强度。在实验研究的基础上,LSPR-LS 强度在 0.4-2.5 μmol L(-1) 范围内呈线性增强,相应的检测限(3σ)为 70.6 nmol L(-1)。在此基础上,该方法被应用于水样中 HQ 的检测,取得了令人满意的结果。

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