Truong Phuoc Long, Ma Xingyi, Sim Sang Jun
School of Chemical Engineering, Sungkyunkwan University, Suwon, 440-746, Korea.
Nanoscale. 2014 Feb 21;6(4):2307-15. doi: 10.1039/c3nr05211g. Epub 2014 Jan 13.
Scientific interest in nanotechnology is driven by the unique and novel properties of nanometer-sized metallic materials such as the strong interaction between the conductive electrons of the nanoparticles and the incident light, caused by localized surface plasmon resonances (LSPRs). In this article, we analysed the relationship of the Rayleigh scattering properties of a single Au nanoparticle with its size, shape, and local dielectric environment. We also provided a detailed study on the refractive index sensitivity of three types of differently shaped Au nanoparticles, which were nanospheres, oval-shaped nanoparticles and nanorods. This study helps one to differentiate the Rayleigh light scattering from individual nanoparticles of different sizes and/or shapes and precisely obtain quantitative data as well as the correlated optical spectra of single gold nanoparticles from the inherently inhomogeneous solution of nanoparticles. These results suggest that the shape, size and aspect ratio of Au nanoparticles are important structural factors in determining the resonant Rayleigh light scattering properties of a single Au nanoparticle such as its spectral peak position, scattering-cross-section and refractive index sensitivity, which gives a handle for the choice of gold nanoparticles for the design and fabrication of single nanosensors.
对纳米技术的科学兴趣是由纳米级金属材料的独特和新颖特性驱动的,例如由局域表面等离子体共振(LSPRs)引起的纳米颗粒导电电子与入射光之间的强相互作用。在本文中,我们分析了单个金纳米颗粒的瑞利散射特性与其尺寸、形状和局部介电环境之间的关系。我们还对三种不同形状的金纳米颗粒(纳米球、椭圆形纳米颗粒和纳米棒)的折射率灵敏度进行了详细研究。这项研究有助于区分不同尺寸和/或形状的单个纳米颗粒的瑞利光散射,并从本质上不均匀的纳米颗粒溶液中精确获得单个金纳米颗粒的定量数据以及相关的光谱。这些结果表明,金纳米颗粒的形状、尺寸和纵横比是决定单个金纳米颗粒共振瑞利光散射特性(如光谱峰值位置、散射截面和折射率灵敏度)的重要结构因素,这为设计和制造单个纳米传感器选择金纳米颗粒提供了依据。