Selective surface-enhanced Raman scattering in a bulk nanoplasmonic Bi2O3-Ag eutectic composite

被引:12
作者
Szlachetko, Kamil [1 ]
Piotrowski, Piotr [1 ]
Sadecka, Katarzyna [2 ]
Osewski, Pawel [2 ]
Kasprowicz, Dobroslawa [4 ]
Pawlak, Dorota A. [1 ,2 ,3 ]
机构
[1] Univ Warsaw, Fac Chem, Pasteura 1, PL-02093 Warsaw, Poland
[2] Inst Elect Mat Technol, Lukasiewicz Res Network, Wolczynska 133, PL-01919 Warsaw, Poland
[3] ENSEMBLE3 Sp ZOO, Wolczynska 133, PL-01919 Warsaw, Poland
[4] Poznan Univ Tech, Fac Tech Phys, Piotrowo 3, PL-60965 Poznan, Poland
关键词
3D SERS substrates; eutectic composites; high-order Raman spectra; plasmonic composites; silver nanoparticles; surface-enhanced Raman scattering; SILVER; SPECTRA; MICROSTRUCTURE; SPECTROSCOPY; NANOWIRES; CRYSTALS; PH;
D O I
10.1515/nanoph-2020-0281
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
A recent surge of interest in surface-enhanced Raman scattering (SERS) has stimulated the search for new systems that can be utilized to fabricate high-performance optical devices. However, the two-dimensional design of the vast majority of SERS-based assemblies has significantly hindered their real-life applicability, motivating the development of three-dimensional volumetric materials. Here, we report selective SERS observed in a volumetric Bi2O3-Ag eutectic composite obtained by the micro-pulling-down method utilizing directional solidification of eutectics. The enhancement of the Raman signal originates from the localized surface plasmon resonance, LSPR, resulting from silver nanoparticles embedded in the composite. The plasmonic origin of the enhancement is confirmed by characteristic features, such as (i) an enhancement magnitude >10(3), (ii) the correspondence between the Raman bands' intensity upon excitation by different wavelengths and the localized surface plasmon resonance (LSPR) intensity, and (iii) the occurrence of overtones, which are absent in the as-grown material that does not exhibit LSPR. The examined Bi2O3-Ag eutectic-based composite is obtained by directional solidification using a simple crystal growth technique. It is the first case of a bulk SERS-active material fabricated by crystal growth techniques, which opens new perspectives towards scalable three-dimensional optical elements with tunable properties based on Raman scattering.
引用
收藏
页码:4307 / 4314
页数:8
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