Wang Hailong, Li Haibo, Xu Shuping, Zhao Bing, Xu Weiqing
State Key Laboratory of Supramolecular Structure and Materials, Institute of Theoretical Chemistry, Jilin University, Changchun, 130012, People's Republic of China.
State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun, 130012, People's Republic of China.
Sci Rep. 2017 Nov 7;7(1):14630. doi: 10.1038/s41598-017-15111-3.
A new strategy named integrated plasmon-enhanced Raman scattering (iPERS) spectroscopy that features a configuration of evanescent field excitation and inverted collection is presented, which well unites the local field enhancement and far field emission, couples localized and propagating surface plasmons, integrates the SERS substrates and Raman spectrometers via a self-designed aplanatic solid immersion lens. A metallic nanoparticle-on-a film (NOF) system was adopted in this configuration because it improves the amplification of the incidence light field in near field by 10 orders of magnitude due to the simultaneous excitation of quadrupolar and dipolar resonance modes. This iPERS allows for higher excitation efficiency to probed molecules and full collection of the directional-radiation Raman scattering signal in an inverted way, which exhibits a practical possibility to monitor plasmonic photocatalytic reactions in nanoscale and a bright future on interfacial reaction studies.
提出了一种名为集成等离子体增强拉曼散射(iPERS)光谱的新策略,其具有倏逝场激发和反向收集的配置,很好地结合了局部场增强和远场发射,耦合了局域表面等离子体和传播表面等离子体,通过自行设计的消球差固体浸没透镜将表面增强拉曼散射(SERS)基底和拉曼光谱仪集成在一起。这种配置采用了薄膜上金属纳米颗粒(NOF)系统,因为由于四极和偶极共振模式的同时激发,它将近场中入射光场的放大提高了10个数量级。这种iPERS能够以更高的激发效率探测分子,并以反向方式完全收集定向辐射拉曼散射信号,这显示了监测纳米级等离子体光催化反应的实际可能性以及在界面反应研究方面的光明前景。