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Fractal theory and controllable preparation of centimeter level silver nanowire arrays and their application in melamine detection as SERS substrates

机译:分形理论及可控制备厘米银纳米线阵列及其在三聚氰胺探测中的应用

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Silver nanowire arrays as surface-enhanced Raman scattering (SERS) substrates were prepared by a solid-state ionics method under the direct current electric field (DCEF) and used to rapidly detect melamine in aqueous solutions. The arrangement density and surface roughness of the prepared silver nanowire arrays are significantly different upon a change in the impressed current intensity. The growth mechanism of silver nanowire arrays was associated with the apical growth advantage and the irregular electrode interface. When the current intensity was 4 mu A and 10 mu A, the fractal dimension of silver nanowire arrays was 1.66 and 1.49, the diameters of nanowires ranged from 90 to 130 nm and 90 to 170 nm, and many densely arranged and regularly arranged silver nanopartides lie in the prepared nanowire arrays, respectively. The result shows that there were more silver nanostructures and surface roughness under 4 mu A DCEF. The Raman signal intensity of melamine molecule shows that the prepared SERS substrate exhibited a high sensitivity. The proposed method allow us detect melamine with a limit of 10(-15) mol/L and 10(-12) mol/L., which are lower than the safety limit estimated by the US food and Drug Administration. With its facile material synthesis, simple detection procedure and low detection concentration, this silver nanowire arrays with high surface roughness indicates a strong potential detection technique in the field of food safety. (C) 2019 Elsevier B.V. All rights reserved.
机译:银纳米线阵列作为表面增强拉曼散射(SERS)衬底通过直流电场(DCEF)下的固态离子方法制备,用于在水溶液中快速检测三聚氰胺。在压印电流强度的变化时,制备的银纳米线阵列的布置密度和表面粗糙度显着不同。银纳米线阵列的生长机制与顶端生长优点和不规则电极界面有关。当电流强度为4μA和10μma时,银纳米线阵列的分形尺寸为1.66和1.49,纳米线的直径范围为90至130nm和90至170nm,并且许多密集地布置和规则地布置的银纳米粒子位于准备的纳米线阵列中。结果表明,在4亩的DCEF下有更多的银纳米结构和表面粗糙度。三聚氰胺分子的拉曼信号强度表明,制备的SERS基材表现出高灵敏度。所提出的方法允许我们检测极限为10(-15)mol / L和10(-12)mol / l的三聚氰胺。低于美国食品和药物管理估计的安全限额。利用其容易材料合成,简单的检测程序和低检测浓度,具有高表面粗糙度的银纳米线阵列表示食品安全领域的强势检测技术。 (c)2019 Elsevier B.v.保留所有权利。

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