Wang Jiajia, Jia Zhenhong, Lv Changwu
Opt Express. 2018 Mar 19;26(6):6507-6518. doi: 10.1364/OE.26.006507.
The enhancement of Raman signal on monocrystalline silicon gratings with varying groove depths and on porous silicon grating were studied for a highly sensitive surface enhanced Raman scattering (SERS) response. In the experiment conducted, porous silicon gratings were fabricated. Silver nanoparticles (Ag NPs) were then deposited on the porous silicon grating to enhance the Raman signal of the detective objects. Results show that the enhancement of Raman signal on silicon grating improved when groove depth increased. The enhanced performance of Raman signal on porous silicon grating was also further improved. The Rhodamine SERS response based on Ag NPs/ porous silicon grating substrates was enhanced relative to the SERS response on Ag NPs/ porous silicon substrates. Ag NPs / porous silicon grating SERS substrate system achieved a highly sensitive SERS response due to the coupling of various Raman enhancement factors.
为了获得高灵敏度的表面增强拉曼散射(SERS)响应,研究了具有不同凹槽深度的单晶硅光栅以及多孔硅光栅上拉曼信号的增强情况。在进行的实验中,制备了多孔硅光栅。然后将银纳米颗粒(Ag NPs)沉积在多孔硅光栅上,以增强检测对象的拉曼信号。结果表明,随着凹槽深度的增加,硅光栅上拉曼信号的增强效果有所改善。多孔硅光栅上拉曼信号的增强性能也进一步提高。基于Ag NPs/多孔硅光栅基底的罗丹明SERS响应相对于Ag NPs/多孔硅基底上的SERS响应有所增强。由于各种拉曼增强因素的耦合,Ag NPs/多孔硅光栅SERS基底系统实现了高灵敏度的SERS响应。