Morphological and optical properties of PdxAg1-x alloy nanoparticles.
Sci Technol Adv Mater
; 19(1): 160-173, 2018.
Article
en En
| MEDLINE
| ID: mdl-29511394
Alloy nanoparticles (NPs) can offer a wide range of opportunities for various applications due to their composition and structure dependent properties such as multifunctionality, electronic heterogeneity, site-specific response, and multiple plasmon resonance bands. In this work, the fabrication of self-assembled PdxAg1-x NPs alloy nanostructures with distinct size, density, shape, and composition is demonstrated via the solid-state dewetting of sputtered Pd/Ag thin films on c-plane sapphire. The initial stage of bilayer dewetting exhibits the nucleation of voids, followed by the expansion of voids and cluster breakdown and finally shape transformation along with the temperature control. Bilayer composition shows a substantial influence on the dewetting such that the overall dewetting is enhanced along with the increased Ag composition, i.e. Pd0.25Ag0.75 > Pd0.5Ag0.5 > Pd0.75Ag0.25. On the other hand, the size and density of NPs can be efficiently controlled by varying the initial thickness of bilayers. Reflectance peaks in UV and near-infrared (NIR) regions and a wide absorption band in the visible region arisen from the surface plasmon resonance are observed in reflectance spectra. The peak intensity depends on the composition of PdxAg1-x NPs and the NIR peaks gradually blue-shift with the size decrement.
101 Self-assembly / Self-organized materials; 106 Metallic materials; 208 Sensors and actuators; 209 Solar cell / Photovoltaics; 212 Surface and interfaces; 306 Thin film / Coatings; 40 Optical, magnetic and electronic device materials; 502 Electron spectroscopy; 503 TEM, STEM, SEM; 504 X-ray / Neutron diffraction and scattering; PdAg nanoparticles; alloy nanoparticles; bilayer dewetting; solid-state dewetting; surface plasmon
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MEDLINE
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En
Revista:
Sci Technol Adv Mater
Año:
2018
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Article
País de afiliación:
Corea del Sur