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Three Dimensional Design of Large-Scale TiO2 Nanorods Scaffold Decorated by Silver Nanoparticles as SERS Sensor for Ultrasensitive Malachite Green Detection

机译:银纳米颗粒修饰的大型TiO2纳米棒支架作为SERS传感器的三维设计,用于超灵敏孔雀石绿检测

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We have designed a large-scale three-dimensional (3D) hybrid nanostructure as surface-enhanced Raman scattering (SERS) sensor by decorating silver nanoparticles on TiO2 nanorods scaffold (Ag/TiO2). Taking p-mercaptobenzoic acid (PMBA) as the probe molecule, the SERS signals collected by point-to-point and time mapping modes show that the relative standard deviation (RSD) in the intensity of the main Raman vibration modes (1079, 1586. cm~(-1)) is less than 10%, demonstrating good spatial uniformity and time stability. This hybrid substrate also exhibits excellent SERS enhancement effect due to the formation of high-density hot spots among the AgNPs, which was proved by finite-difference time-domain (FDTD) simulations. The application of the new nanostructures as SERS sensors was demonstrated with the detection of malachite green (MG). The quantification of MG can be accomplished with the detection limit of 1 X 10~12 M based on the Raman intensity. The results show that the Ag/TiO2 nanostructure can be a promising candidate for SERS sensor.
机译:我们通过在TiO2纳米棒支架(Ag / TiO2)上装饰银纳米颗粒,设计出了大规模的三维(3D)杂化纳米结构,作为表面增强拉曼散射(SERS)传感器。以对巯基苯甲酸(PMBA)为探针分子,通过点对点和时间映射模式收集的SERS信号显示出主要拉曼振动模式强度的相对标准偏差(RSD)(1079,1586。 cm〜(-1))小于10%,显示出良好的空间均匀性和时间稳定性。由于在AgNP之间形成了高密度热点,因此这种混合基质还具有出色的SERS增强效果,这已通过时域有限差分(FDTD)模拟得到了证明。通过孔雀石绿(MG)的检测证明了新的纳米结构作为SERS传感器的应用。 MG的定量可以基于拉曼强度以1 X 10〜12 M的检出限完成。结果表明,Ag / TiO2纳米结构可以作为SERS传感器的有前途的候选人。

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