Fan Qunfang, Cao Jie, Liu Ye, Yao Bo, Mao Qinghe
Appl Opt. 2013 Sep 1;52(25):6163-9. doi: 10.1364/AO.52.006163.
The process of depositing nanoparticles onto tapered fiber probes with the laser-induced chemical deposition method (LICDM) and the surface-enhanced Raman scattering (SERS) detection performance of the prepared probes are experimentally investigated in this paper. Our results show that the nanoparticle-deposited tapered fiber probes prepared with the LICDM method depend strongly on the value of the cone angle. For small-angle tapered probes the nanoparticle-deposited areas are only focused at the taper tips, because the taper surfaces are mainly covered by a relatively low-intensity evanescent field. By lengthening the reaction time or increasing the induced power or solution concentration, it is still possible to deposit nanoparticles on small-angle tapers with the light-scattering effect. With 4-aminothiophenol as the testing molecule, it was found that for given preparation conditions, the cone angles for the tapered probes with the highest SERS spectral intensities for different excitation laser powers are almost the same. However, such an optimal cone angle is determined by the combined effects of both the localized surface plasmon resonance strength and the transmission loss generated by the nanoparticles deposited.
本文通过实验研究了采用激光诱导化学沉积法(LICDM)将纳米颗粒沉积到锥形光纤探针上的过程以及所制备探针的表面增强拉曼散射(SERS)检测性能。我们的结果表明,用LICDM方法制备的纳米颗粒沉积锥形光纤探针强烈依赖于锥角的值。对于小角度锥形探针,纳米颗粒沉积区域仅集中在锥尖,因为锥形表面主要被相对低强度的倏逝场覆盖。通过延长反应时间、增加诱导功率或溶液浓度,利用光散射效应仍有可能在小角度锥面上沉积纳米颗粒。以4-氨基硫酚作为测试分子,发现在给定的制备条件下,对于不同激发激光功率具有最高SERS光谱强度的锥形探针的锥角几乎相同。然而,这样的最佳锥角是由局部表面等离子体共振强度和沉积的纳米颗粒产生的传输损耗的综合效应决定的。