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Emission enhancement of laser-induced breakdown spectroscopy for aqueous sample analysis based on Au nanoparticles and solid-phase substrate

机译:基于金纳米颗粒和固相底物的水样分析中激光诱导击穿光谱的发射增强

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摘要

In this paper, porous electrospun ultrafine fiber with a nanoparticle coating was proposed as an effective approach to enhance the laser-induced breakdown spectroscopy (LIBS) signal for metal ions in aqueous systems. It is known that the LIBS technique is very limited when used for liquid sample analysis. On the other hand, in practical applications, many LIBS measurements have been accomplished in a liquid environment. A signal enhancement method for aqueous sample LIBS analysis was presented in this work, where Au nanoparticles and a solid-phase support were combined for the first time for aqueous sample analysis with LIBS. The system operation was relatively simple, which only required Au nanoparticles being dropped onto the surface of porous electrospun ultrafine fibers before LIBS analysis. Significant signal enhancement was achieved due to the integration of the merits of the Au nanoparticles and the ultrafine fibers. Nanoparticles possess significant LIBS signal enhancement effects by providing several plasma ignition points and then causing more efficient emissions. In addition, Au nanoparticles could also help to decrease the breakdown threshold of target elements for LIBS analysis. The electrospun ultrafine fibers as solid-phase support can accommodate a larger volume of aqueous sample. Meanwhile, the aqueous solution on the fiber surface was easy to evaporate. The experimental results showed that the limits of detection (LODs) with this method were significantly improved, 0.5 mu g/mL for Cr, 0.5 mu g/mL for Pb, and 1.1 mu g/mL for Cu, respectively, compared with 2.0 mu g/mL for Cr and 3.3 mu g/mL for Cu in the previous research. In the proposed method, signal enhancement could be achieved without any extra equipment, which makes the LIBS technique feasible for direct measurement of an aqueous sample. (C) 2016 Optical Society of America
机译:在本文中,提出了一种带有纳米粒子涂层的多孔电纺超细纤维,作为增强水性系统中金属离子的激光诱导击穿光谱(LIBS)信号的有效方法。众所周知,LIBS技术在用于液体样品分析时非常有限。另一方面,在实际应用中,已经在液体环境中完成了许多LIBS测量。这项工作提出了一种信号增强方法,用于水样品的LIBS分析,其中金纳米粒子和固相载体首次结合使用LIBS进行水样品分析。系统操作相对简单,仅需在LIBS分析之前将Au纳米颗粒滴到多孔电纺超细纤维的表面即可。由于金纳米颗粒和超细纤维的优点相结合,实现了显着的信号增强。通过提供几个等离子体着火点,然后引起更有效的发射,纳米粒子具有显着的LIBS信号增强作用。此外,金纳米颗粒还可以帮助降低LIBS分析目标元素的分解阈值。作为固相载体的电纺超细纤维可以容纳更大体积的水性样品。同时,纤维表面上的水溶液易于蒸发。实验结果表明,该方法的检出限(LODs)显着提高,铬的检测限为0.5μg/ mL,铅的检测限为0.5μg/ mL,铜的检测限为1.1μg/ mL,而2.0μ在先前的研究中,Cr的含量为g / mL,Cu的含量为3.3μg/ mL。在提出的方法中,无需任何额外的设备即可实现信号增强,这使得LIBS技术可用于直接测量水性样品。 (C)2016美国眼镜学会

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