Fan Yimin, Zhang Tao, Cai Zubo, Li Dongxian, Yue Weisheng, Gong Tiancheng, Luo Yunfei, Gao Ping
State Key Laboratory of Optical Technologies on Nano-Fabrication and Micro-Engineering, Institute of Optics and Electronics, Chinese Academy of Sciences, PO Box 350, Chengdu 610209, People's Republic of China.
School of Optoelectronics, University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.
Nanotechnology. 2022 Apr 1;33(25). doi: 10.1088/1361-6528/ac5df8.
Arrays of gold-silver (Au-Ag) bimetallic nanopillars were fabricated by a newly developed surface-plasmon lithography (SPL) and their enhancement properties as surface-enhanced Raman scattering (SERS) substrates have been studied. We demonstrated that the SPL is a low-cost and high efficiency method for the fabrication of SERS substrates with both high sensitivity and reproducibility. The nanopillars showed a good response in the detection of methylene blue molecules at a low concentration of 1.0 × 10mol· l. The SERS enhancement factors (EFs) are on the orders of 10and the relative standard deviation of SERS intensity is <8% over an area of 50m × 50m. The EFs increase fast with the height increasing from 200 to 530 nm, then increase slowly when further increase the height of the nanopillars to 1100 nm. In addition, the Au-Ag bimetallic coating has shown much higher SERS enhancement than the coatings of either the pure Au or Ag. The excellent SERS enhancement and reproducibility of the Au-Ag coated nanopillars indicated that the fabricated SERS substrates can be used for the detection of biochemical molecules at trace level and the SPL is a promising method for fabrication of SERS substrates.
通过新开发的表面等离子体光刻技术(SPL)制备了金银(Au-Ag)双金属纳米柱阵列,并研究了它们作为表面增强拉曼散射(SERS)基底的增强特性。我们证明,SPL是一种低成本、高效率的方法,可用于制备具有高灵敏度和可重复性的SERS基底。这些纳米柱在检测浓度为1.0×10mol·L的低浓度亚甲基蓝分子时表现出良好的响应。SERS增强因子(EFs)约为10,在50m×50m的面积上,SERS强度的相对标准偏差<8%。随着高度从200nm增加到530nm,EFs快速增加,然后当纳米柱高度进一步增加到1100nm时,增加缓慢。此外,Au-Ag双金属涂层显示出比纯Au或Ag涂层更高的SERS增强。Au-Ag涂层纳米柱优异的SERS增强和可重复性表明,制备的SERS基底可用于痕量水平生化分子的检测,并且SPL是一种有前途的SERS基底制备方法。