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Stability of contamination-free gold and silver nanoparticles produced by nanosecond laser ablation of solid targets in water
- Source :
- Applied Surface Science. 258:9318-9322
- Publication Year :
- 2012
- Publisher :
- Elsevier BV, 2012.
-
Abstract
- Preparation of noble metal nanoparticle (NPs) colloids using pulsed laser ablation in water has an inherent advantage compared to the different chemical methods used, especially when biological applications of the colloids are considered. The fabrication method is simple and the NPs prepared in this way are contamination free. The method of laser ablation of a solid target in water is applied in the present work in order to obtain gold and silver NP colloids. The experiment was preformed by using the fundamental wavelength (1064 nm) of a Nd:YAG laser system. The target immersed in double distilled water was irradiated for 20 min by laser pulses with duration of 15 ns and repetition rate of 10 Hz. The sedimentation and aggregation of NPs in the colloids, stored at constant temperature, as a function of the time after preparation were investigated. The analyses are based on optical transmission spectroscopy in UV and vis regions. The change of the plasmon resonance wavelength as a function of time was studied. Zeta potential measurement was also utilized to measure the charge of the NPs in the colloids. The size distribution of the NPs and its change in time was determined by transmission electron microscopy (TEM). On the basis of the results obtained, the optimal conditions of post fabrication manipulation with gold and silver colloids are defined in view of producing stable NPs with a narrow size distribution.
- Subjects :
- Laser ablation
Materials science
technology, industry, and agriculture
Analytical chemistry
General Physics and Astronomy
Nanoparticle
Surfaces and Interfaces
General Chemistry
engineering.material
Condensed Matter Physics
Laser
Silver nanoparticle
Surfaces, Coatings and Films
law.invention
Chemical engineering
law
Transmission electron microscopy
Zeta potential
engineering
Noble metal
Surface plasmon resonance
Subjects
Details
- ISSN :
- 01694332
- Volume :
- 258
- Database :
- OpenAIRE
- Journal :
- Applied Surface Science
- Accession number :
- edsair.doi...........aeacfc5b66f35f22eb8db1b142c74632
- Full Text :
- https://doi.org/10.1016/j.apsusc.2011.12.040