Laser Dynamics Laboratory, School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia 30332-0400, USA.
Langmuir. 2013 May 28;29(21):6253-61. doi: 10.1021/la400845z. Epub 2013 May 14.
Enhancements of the Raman signal by the newly prepared gold-palladium and gold-platinum double-shell hollow nanoparticles were examined and compared with those using gold nanocages (AuNCs). The surface-enhanced Raman spectra (SERS) of thiophenol adsorbed on the surface of AuNCs assembled into a Langmuir-Blodgett monolayer were 10-fold stronger than AuNCs with an inner Pt or Pd shell. The chemical and electromagnetic enhancement mechanisms for these hollow nanoparticles were further proved by comparing the Raman enhancement of nitrothiophenol and nitrotoulene. Nitrothiophenol binds to the surface of the nanoparticles by covalent interaction, and Raman enhancement by both the two mechanisms is possible, while nitrotoulene does not form any chemical bond with the surface of the nanoparticles and hence no chemical enhancement is expected. Based on discrete dipole approximation (DDA) calculations and the experimental SERS results, AuNCs introduced a high electromagnetic enhancement, while the nanocages with inner Pt or Pd shell have a strong chemical enhancement. The optical measurements of the localized surface plasmon resonance (LSPR) of the nanocages with an outer Au shell and an inner Pt or Pd shell were found, experimentally and theoretically, to be broad compared with AuNCs. The possible reason could be due to the decrease of the coherence time of Au oscillated free electrons and fast damping of the plasmon energy. This agreed well with the fact that a Pt or Pd inner nanoshell decreases the electromagnetic field of the outer Au nanoshell while increasing the SERS chemical enhancement.
新制备的金钯和金铂双壳空心纳米粒子增强了拉曼信号,并与使用金纳米笼 (AuNCs) 的情况进行了比较。吸附在 AuNCs 表面上的巯基苯组装成 Langmuir-Blodgett 单层的表面增强拉曼光谱 (SERS) 比具有内 Pt 或 Pd 壳的 AuNCs 强 10 倍。通过比较硝基噻吩和硝基甲苯的拉曼增强,进一步证明了这些空心纳米粒子的化学和电磁增强机制。硝基噻吩通过共价相互作用与纳米粒子表面结合,两种机制都可能产生拉曼增强,而硝基甲苯与纳米粒子表面不形成任何化学键,因此预计不会产生任何化学增强。基于离散偶极近似 (DDA) 计算和实验 SERS 结果,AuNCs 引入了高电磁增强,而具有内 Pt 或 Pd 壳的纳米笼具有强化学增强。实验和理论上都发现,具有外 Au 壳和内 Pt 或 Pd 壳的纳米笼的局域表面等离激元共振 (LSPR) 的光学测量比 AuNCs 宽。可能的原因是由于 Au 振荡自由电子的相干时间减少和等离子体能量的快速阻尼。这与一个事实相符,即 Pt 或 Pd 内纳米壳减小了外 Au 纳米壳的电磁场,同时增加了 SERS 化学增强。