| Literature DB >> 19451685 |
Ming-Wen Chu1, Pradeep Sharma, Ching-Pin Chang, Sz Chian Liou, Kun-Tong Tsai, Juen-Kai Wang, Yuh-Lin Wang, Cheng Hsuan Chen.
Abstract
Previous investigations of surface plasmons in Ag largely focused on their excitations in the visible spectral regime. Using scanning transmission electron microscopy with an electron beam of 0.2 nm in conjunction with electron energy-loss spectroscopy, we spectrally and spatially probe the surface plasmons in individual Ag nanoparticles (approximately 30 nm), grown on Si, in the ultra-violet spectral regime. The nanomaterials show respective sharp and broad surface-plasmon resonances at approximately 3.5 eV (approximately 355 nm) and approximately 7.0 eV (approximately 177 nm), and the correlated spectral calculations established their multipolar characteristics. The near-field distributions of the surface plasmons on the nanoparticles were also mapped out, revealing the predominant dipolar nature of the 3.5 eV excitation with obvious near-field enhancements at one end of the nano-object. The unveiled near-field enhancements have potential applications in plasmonics and molecular sensing.Entities:
Year: 2009 PMID: 19451685 DOI: 10.1088/0957-4484/20/23/235705
Source DB: PubMed Journal: Nanotechnology ISSN: 0957-4484 Impact factor: 3.874