Manipulating acoustic and plasmonic modes in gold nanostars

被引:7
|
作者
Chatterjee, Sharmistha [1 ,2 ,3 ]
Ricciardi, Loredana [2 ,3 ]
Deitz, Julia, I [4 ,5 ]
Williams, Robert E. A. [4 ]
McComb, David W. [4 ,5 ]
Strangi, Giuseppe [1 ,2 ,3 ]
机构
[1] Case Western Reserve Univ, Dept Phys, 10600 Euclid Ave, Cleveland, OH 44106 USA
[2] Univ Calabria, Dept Phys, CNR NANOTEC Ist Nanotecnol, I-87036 Arcavacata Di Rende, Italy
[3] Fdn Con Il Cuore, Via Roma 170, I-88811 Ciro Marina, Italy
[4] Ohio State Univ, Ctr Electron Microscopy & Anal, Columbus, OH 43212 USA
[5] Ohio State Univ, Dept Mat Sci & Engn, 116 W 19Th Ave, Columbus, OH 43210 USA
来源
NANOSCALE ADVANCES | 2019年 / 1卷 / 07期
关键词
SHAPE-CONTROLLED SYNTHESIS; ENERGY-LOSS SPECTROSCOPY; BREATHING MODES; OPTICAL-PROPERTIES; METAL NANOPARTICLES; LIGHT CONCENTRATION; MEDIATED SYNTHESIS; NOBLE-METAL; SOLAR-CELL; ELECTRON;
D O I
10.1039/c9na00301k
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In this contribution experimental evidence of plasmonic edge modes and acoustic breathing modes in gold nanostars (AuNSs) is reported. AuNSs are synthesized by a surfactant-free, one-step wet-chemistry method. Optical extinction measurements of AuNSs confirm the presence of localized surface plasmon resonances (LSPRs), while electron energy-loss spectroscopy (EELS) using a scanning transmission electron microscope (STEM) shows the spatial distribution of LSPRs and reveals the presence of acoustic breathing modes. Plasmonic hot-spots generated at the pinnacle of the sharp spikes, due to the optically active dipolar edge mode, allow significant intensity enhancement of local fields and hot-electron injection, and are thus useful for size detection of small protein molecules. The breathing modes observed away from the apices of the nanostars are identified as stimulated dark modes - they have an acoustic nature - and likely originate from the confinement of the surface plasmon by the geometrical boundaries of a nanostructure. The presence of both types of modes is verified by numerical simulations. Both these modes offer the possibility of designing nanoplasmonic antennas based on AuNSs, which can provide information on both mass and polarizability of biomolecules using a two-step molecular detection process.
引用
收藏
页码:2690 / 2698
页数:9
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