论文标题
定量连接单个银纳米德拉的形态和光学响应
Quantitatively linking morphology and optical response of individual silver nanohedra
论文作者
论文摘要
金属纳米颗粒的光学响应受等离子共振的控制,这是由粒子形态决定的。对形态与光学反应之间的联系的透彻理解需要定量测量同一粒子的光学和结构特性。在这里,我们提出了一项研究,将电子断层扫描和光学微光谱学关联。光学测量确定了绝对单元中的散射和吸收横截面光谱,电子断层扫描决定了3D形态。单个颗粒几何形状的光谱的数值模拟以及所使用的特定光学设置,可以进行定量比较,包括横截面幅度。研究了由光化学驱动的胶体合成产生的银纳米颗粒,包括Decahedra,Tetrahedra和Bi-Tetrahedra。当假设纯银颗粒通过在表面上存在一些原子层的粉状层解决,而在电子层析成像中没有明显的情况下,发现了纯银颗粒时,发现了测得和模拟的光谱的不匹配。提出的方法收紧了粒子形态与光学响应之间的联系,支持等离子纳米材料的预测设计。
The optical response of metal nanoparticles is governed by plasmonic resonances, which are dictated by the particle morphology. A thorough understanding of the link between morphology and optical response requires quantitatively measuring optical and structural properties of the same particle. Here we present such a study, correlating electron tomography and optical micro-spectroscopy. The optical measurements determine the scattering and absorption cross-section spectra in absolute units, and electron tomography determines the 3D morphology. Numerical simulations of the spectra for the individual particle geometry, and the specific optical setup used, allow for a quantitative comparison including the cross-section magnitude. Silver nanoparticles produced by photochemically driven colloidal synthesis, including decahedra, tetrahedra and bi-tetrahedra are investigated. A mismatch of measured and simulated spectra is found when assuming pure silver particles, which is resolved by the presence of a few atomic layers of tarnish on the surface, not evident in electron tomography. The presented method tightens the link between particle morphology and optical response, supporting the predictive design of plasmonic nanomaterials.