College of Sciences, Northeastern University, Shenyang 110819, China.
Sensors (Basel). 2023 Mar 16;23(6):3163. doi: 10.3390/s23063163.
In this paper, three different structures of surface plasmon resonance (SPR) sensors based on the Kretschmann configuration: Au/SiO thin film structure, Au/SiO nanospheres and Au/SiO nanorods are designed by adding three different forms of SiO materials behind the gold film of conventional Au-based SPR sensors. The effects of SiO shapes on the SPR sensor are investigated through modeling and simulation with the refractive index of the media to be measured ranging from 1.330 to 1.365. The results show that the sensitivity of Au/SiO nanospheres could be as high as 2875.4 nm/RIU, which is 25.96% higher than that of the sensor with a gold array. More interestingly, the increase in sensor sensitivity is attributed to the change in SiO material morphology. Therefore, this paper mainly explores the influence of the shape of the sensor-sensitizing material on the performance of the sensor.
在本文中,设计了三种基于 Kretschmann 配置的不同结构的表面等离子体共振(SPR)传感器:在传统的基于金的 SPR 传感器的金膜后面添加三种不同形式的 SiO 材料,得到 Au/SiO 薄膜结构、Au/SiO 纳米球和 Au/SiO 纳米棒。通过对测量介质折射率在 1.330 到 1.365 范围内的建模和模拟,研究了 SiO 形状对 SPR 传感器的影响。结果表明,Au/SiO 纳米球的灵敏度可高达 2875.4nm/RIU,比具有金阵列的传感器高 25.96%。更有趣的是,传感器灵敏度的增加归因于 SiO 材料形态的变化。因此,本文主要探讨了传感器敏化材料形状对传感器性能的影响。