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Plasmonic optical sensors printed from Ag-PVA nanoinks

机译:用Ag-PVA纳米墨水印刷的等离子光学传感器

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In this paper we report on the use of a nanocomposite based on silver nanoparticles embedded in PVA as a plasmonic optical sensor to detect and quantify trace amounts of amines in gas and water, respectively. The transduction mechanism of the sensor is based on the changes of the LSPR band of Ag NPs when analyte molecules are chemisorbed on their surface. The Ag-PVA sensors are fabricated by means of a high-precision microplotter, a direct-write technology developed for printing materials from solution. The nanoink is formulated with a metal precursor (AgNOs) and a polymer (PVA) using an adequate mixture of solvents to meet.the rheological requirements for the fluid dispensing process. The LSPR intensity is the most sensitive magnitude to follow the interaction between Ag NPs embedded in PVA and amines. Ag-PVA patterns are tested as a plasmonic optical sensor for the detection of ethylenediamine in solution showing a limit of detection as low as 0.1 nM. Moreover Ag nanocomposite patterns are also used for sensing vapours of several biogenic (cadaverine and putrescine) and synthetic (ethylenediamine and methylenediamine) amines, where shorter amines exhibit the largest sensor response. This plasmonic optical sensor is also tested in real-time monitoring of chicken meat spoilage at room temperature. We believe that the Ag-PVA nanocomposite can be the basis for the development of sensor spots, barcodes and other labels for smart packaging technology, among other sensing applications.
机译:在本文中,我们报告了基于嵌入PVA中的银纳米颗粒的纳米复合材料作为等离子体光学传感器的应用,以分别检测和定量分析气体和水中的痕量胺。传感器的转导机制是基于当分析物分子化学吸附在其表面上时,Ag NP的LSPR带的变化。 Ag-PVA传感器通过高精度微绘图仪制造,这是一种直接写入技术,用于从溶液中打印材料。纳米墨水由金属前驱物(AgNOs)和聚合物(PVA)配制而成,并使用适当的溶剂混合物来满足流体分配过程的流变要求。 LSPR强度是跟随PVA中嵌入的Ag NP与胺之间相互作用的最敏感强度。将Ag-PVA图案作为等离子体光学传感器进行测试,以检测溶液中的乙二胺,其检测限低至0.1 nM。此外,Ag纳米复合材料图案还用于感测几种生物胺(尸胺和腐胺)和合成胺(乙二胺和亚甲基二胺)的蒸气,其中较短的胺表现出最大的传感器响应。该等离子光学传感器还在室温下实时监控鸡肉变质方面进行了测试。我们相信,Ag-PVA纳米复合材料可以作为开发传感器点,条形码和其他用于智能包装技术的标签以及其他传感应用的基础。

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