首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >NaYF_4:Yb~(3+)/Er~(3+) nanoparticle-based upconversion luminescence resonance energy transfer sensor for mercury(ii) quantification
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NaYF_4:Yb~(3+)/Er~(3+) nanoparticle-based upconversion luminescence resonance energy transfer sensor for mercury(ii) quantification

机译:基于NaYF_4:Yb〜(3 +)/ Er〜(3+)纳米粒子的上转换发光共振能量转移传感器用于汞(ii)定量

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Upconversion luminescence is an anti-Stokes' emission process by converting long wavelength near-infrared (NIR, 980 nm) irradiation into shorter wavelength visible light emission, which demonstrates many advantages including no autofluorescence, low damage to samples, no photobleaching, and high sensitivity. Based on the Rhodamine B thiolactone (RBT) functionalized NaYF _4:15%Yb~(3+),5%Er~(3+) (UCNPs@RBT) nanocomposites, an ultrasensitive, selective, and rapid upconversion luminescence resonance energy transfer (UC-LRET) sensor has been developed for the detection of mercury ions (Hg~(2+)) in water. Upconverting luminescence resonance energy transfer from the UCNPs to the RBT derivates occurs after the addition of Hg~(2+) ions into the UCNPs@RBT colloidal solution. This UC-LRET recognition of Hg ~(2+) can be finished within 1 min and other cations have no influence on the detection of mercury ions. This newly developed sensor demonstrates high selectivity toward the mercury ions and enables ultrasensitive and rapid detection of mercury ions in water in the range of 5 nM to 10 μM with a 3σ limit of detection of 3.7 nM. This sensor can be used for a naked-eye detection of Hg~(2+) ions via its green upconverting luminescence response under the infrared excitation (980 nm) with the merit of no autofluorescence interference and good photostability. In addition, by dipping the hydrogel of UCNPs@RBT nanocomposites onto the filter paper, a highly selective and convenient luminescent paper sensor for Hg~(2+) ions was also developed.
机译:上转换发光是将长波长近红外(NIR,980 nm)辐射转换为较短波长的可见光发射的一种反斯托克斯发射过程,具有许多优点,包括无自发荧光,对样品的损害小,无光漂白和高灵敏度。基于若丹明B硫代内酯(RBT)功能化的NaYF _4:15%Yb〜(3 +),5%Er〜(3+)(UCNPs @ RBT)纳米复合材料,可实现超灵敏,选择性和快速的上转换发光共振能量转移( UC-LRET)传感器已被开发用于检测水中的汞离子(Hg〜(2+))。在UCNPs @ RBT胶体溶液中加入Hg〜(2+)离子后,发生了从UCNPs到RBT衍生物的上转换发光共振能量转移。 Hg〜(2+)的这种UC-LRET识别可以在1分钟内完成,其他阳离子对汞离子的检测没有影响。这种新开发的传感器显示出对汞离子的高选择性,并能够在5 nM至10μM的范围内超灵敏,快速地检测水中的汞离子,而3σ的检出限为3.7 nM。该传感器可通过红外激发(980 nm)下的绿色上转换发光响应,用于肉眼检测Hg〜(2+)离子,具有无自发荧光干扰和良好的光稳定性的优点。此外,通过将UCNPs @ RBT纳米复合材料的水凝胶浸入滤纸上,还开发了一种用于Hg〜(2+)离子的高选择性和便捷的发光纸传感器。

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