Ma W Y, Yang H, Hilton J P, Lin Q, Liu J Y, Huang L X, Yao J
State Key Lab of Optical Technologies for Microfabrication, Institute of Optics and Electronics, Chinese Academy of Science, Chengdu, China.
Opt Express. 2010 Jan 18;18(2):843-53. doi: 10.1364/OE.18.000843.
Advances in nanofabrication and nano-scale measurement methods now allow for fabrication of highly detailed nanometer-scale topographic features. As geometric features greatly impact the formation of an electromagnetic field in response to incident light, this in turn calls for the study of the effects of new features of nanostructures on their performance in applications such as localized surface plasmon resonance (LSPR) sensing. This paper studies the effects of vertex features of a single nanostructure on its LSPR properties. A general relationship between the LSPR spectra and the vertex features of a nanoparticle is established. The results of electrodynamics calculations show that a delta-star with a relatively small vertex angle exhibits a bigger resonant wavelength than one with a large vertex angle. Moreover, the sensing performance initially increases, and then decreases as angular size of the vertices increases, with a turning point of 30 degrees. It is also shown that for nanostars with different numbers of vertices, the resonant wavelength undergoes a blue shift and the sensing performance grows poorer as the number of vertices increases. A regular vertex angle of 30 degrees displays the greatest figure of merit (FOM) value for LSPR applications, approximately 9.5 RIU(-1).
纳米制造和纳米尺度测量方法的进展现在使得能够制造出高度精细的纳米尺度地形特征。由于几何特征会极大地影响响应入射光时电磁场的形成,这反过来又需要研究纳米结构的新特征对其在诸如局域表面等离子体共振(LSPR)传感等应用中的性能的影响。本文研究了单个纳米结构的顶点特征对其LSPR特性的影响。建立了LSPR光谱与纳米颗粒顶点特征之间的一般关系。电动力学计算结果表明,顶点角相对较小的三角星比顶点角大的三角星表现出更大的共振波长。此外,传感性能最初会增加,然后随着顶点角尺寸的增加而降低,转折点为30度。研究还表明,对于具有不同顶点数的纳米星,随着顶点数的增加,共振波长会发生蓝移,传感性能也会变差。30度的规则顶点角在LSPR应用中显示出最大的品质因数(FOM)值,约为9.5 RIU(-1)。