Si@Au Core-Shell Nanostructures: Toward a New Platform for Controlling Optical Properties at the Nanoscale

被引:7
作者
Chaabani, Wajdi [1 ,2 ]
Proust, Julien [1 ]
Ouellet, Samuel [1 ,3 ]
Movsesyan, Artur [1 ]
Beal, Jeremie [1 ]
Bachelot, Renaud [1 ]
Xu, Tao [4 ]
Baudrion, Anne-Laure [1 ]
Adam, Pierre-Michel [1 ]
Boudreau, Denis [3 ]
Chehaidar, Abdallah [2 ]
Plain, Jerome [1 ]
机构
[1] Univ Technol Troyes, Light Nanomat Nanotechnol L2n Lab, CNRS ERL 7004, F-10004 Troyes, France
[2] Univ Sfax, Fac Sci Sfax, Lab Phys Math & Applicat, Sfax 3000, Tunisia
[3] Univ Laval, Ctr Opt Photon & Laser, Quebec City, PQ G1V 0A6, Canada
[4] Shanghai Univ, Minist Educ, Sch Mechatron Engn & Automat, Key Lab Adv Display & Syst Applicat, Shanghai 200072, Peoples R China
关键词
FANO RESONANCES; GOLD CLUSTERS; NANOPARTICLES; NANOSHELLS; GENERATION; SCATTERING; LIGHT; WATER;
D O I
10.1021/acs.jpcc.1c06182
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Hybrid dielectric-metal colloid nanoparticle heterostructures have recently attracted attention in both fundamentals and applications. In this paper, we developed a new approach based on mechanical grinding and chemical synthesis in order to obtain hybrid dielectric-metal nanoparticles. By increasing the amounts of the stabilizing agent (polyvinylpyrrolidone (PVP)), three different types of hybrid colloidal structures were obtained, Si/Au core-island, core-shell, and core-shell oligomers heterostructures, respectively. The obtained colloidal heterostructures were analyzed by dynamic light scattering (DLS) and scanning electron microscope (SEM) measurements. Moreover, the optical properties of hybrid nanostructure have been carefully studied. A splitting was observed in the extinction spectra of colloidal solutions for different Si/Au colloidal heterostructures compared to Si colloidal nanoparticles, attributed to the hybridization of plasmon. Thanks to photolitholographic and drop-cast deposition techniques on a substrate, we were able to locate the colloidal nanoparticles heterostructures and to measure the backward scattering spectra using single-particle dark-field scattering spectroscopy. To better understand scattering results, FDTD simulations of scattering cross-section and electric near-field distributions were performed. As is well-known, the scattering spectrum of the pristine Si core is dominated by electric and magnetic dipolar modes in the visible region. More importantly, the scattering spectra of Si/Au core-island and core-shell support several phenomena such as collective magnetic dipolar modes and multiple Fano lineshapes. Our finding highlights the potential of our dielectric-metal heterostructures as a platform for studying light-matter interactions at the nanoscale.
引用
收藏
页码:20606 / 20616
页数:11
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