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Size Control of Silver-Core/Silica-Shell Nanoparticles Fabricated by Laser-Ablation-Assisted Chemical Reduction.

Victor A ErmakovErnesto Jimenez-VillarJosé Maria Clemente da Silva FilhoEmre YassitepeNaga Vishnu Vardhan MogiliFernando IikawaGilberto Fernandes de SáCarlos Lenz CesarFrancisco Chagas Marques
Published in: Langmuir : the ACS journal of surfaces and colloids (2017)
Aqueous colloidal silver nanoparticles have substantial potential in biological application as markers and antibacterial agents and in surface-enhanced Raman spectroscopy applications. A simple method of fabrication and encapsulation into an inert shell is of great importance today to make their use ubiquitous. Here we show that colloids of silver-core/silica-shell nanoparticles can be easily fabricated by a laser-ablation-assisted chemical reduction method and their sizes can be tuned in the range of 2.5 to 6.3 nm by simply choosing a proper water-ethanol proportion. The produced silver nanoparticles possess a porous amorphous silica shell that increases the inertness and stability of colloids, which decreases their toxicity compared with those without silica. The presence of a thin 2 to 3 nm silica shell was proved by EDX mapping. The small sizes of nanoparticles achieved by this method were analyzed using optical techniques, and they show typical photoluminescence in the UV-vis range that shifts toward higher energies with decreasing size.
Keyphrases
  • silver nanoparticles
  • raman spectroscopy
  • high resolution
  • photodynamic therapy
  • high speed
  • radiofrequency ablation
  • density functional theory
  • anti inflammatory
  • energy transfer