Smejkal Petr, Sisková Karolína, Vlcková Blanka, Pfleger Jirí, Sloufová Ivana, Slouf Miroslav, Mojzes Peter
Department of Physical and Macromolecular Chemistry, Charles University, Hlavova 2030, CZ-12840 Prague 2, Czech Republic.
Spectrochim Acta A Mol Biomol Spectrosc. 2003 Aug;59(10):2321-9. doi: 10.1016/s1386-1425(03)00075-1.
A four step Ag foil laser ablation-Ag nanoparticle fragmentation procedure in ultrapure water was carried out both under argon and in air. Pulses of a high power Nd/YAG laser were used for laser ablation (1064 nm) and for the three step Ag hydrosol treatment in the absence of Ag foil in the sequence 1064-532-1064 nm. Transmission electron microscopy (TEM) and surface plasmon (SP) extinction spectra provide evidence of Ag nanoparticle fragmentation in the second and third step of the procedure carried out under argon. While polydispersity of Ag hydrosol increases in the second step, both the polydispersity and the mean size of the nanoparticles are reduced in the third step. Qualitative and quantitative surface-enhanced Raman scattering (SERS)/surface-enhanced resonance Raman scattering (SERRS) spectral probing of systems with Ag hydrosols and the selected adsorbates at 514.5 nm excitation shows that Ag hydrosols obtained in the second step of the preparation procedure carried out in air are the most suitable substrates for SERS/SERRS experiments performed at this excitation wavelength.
在超纯水中,分别在氩气和空气中进行了一个四步银箔激光烧蚀 - 银纳米颗粒破碎过程。高功率Nd/YAG激光脉冲用于激光烧蚀(1064nm)以及在无银箔的情况下进行三步银水溶胶处理,顺序为1064 - 532 - 1064nm。透射电子显微镜(TEM)和表面等离子体(SP)消光光谱提供了在氩气环境下该过程第二步和第三步中银纳米颗粒破碎的证据。虽然银水溶胶的多分散性在第二步增加,但在第三步中纳米颗粒的多分散性和平均尺寸都减小了。在514.5nm激发下,对含有银水溶胶和选定吸附物的系统进行定性和定量表面增强拉曼散射(SERS)/表面增强共振拉曼散射(SERRS)光谱探测表明,在空气中进行的制备过程第二步中获得的银水溶胶是在此激发波长下进行SERS/SERRS实验最合适的底物。