DocumentCode :
2605699
Title :
Environment effect on structure, size control and stability of Zn and ZnO nanoparticles
Author :
Fardad, Shima ; Massudi, Reza
Author_Institution :
Laser & Plasma Res. Inst., Shahid Beheshti Univ., Tehran
fYear :
2007
fDate :
2-5 Aug. 2007
Firstpage :
647
Lastpage :
650
Abstract :
Effects of liquid surrounding on production, initial size, colloidal stability and optical properties of zinc and zinc oxide nanoparticles, synthesized by pulsed laser ablation method in different liquid environments are studied. In this work, Zn and ZnO nanoparticles were produced by 532 nm harmonic of a Nd:YAG laser ablation of a pure zinc metal target in different aqueous solutions of deionized water, ethanol and sodium hydroxide with various concentrations and pH. It was found that by changing the pH and temperature of the environment, the structure, size, and stability of the colloidal nanoparticles changed. The particles produced using low ablation energies in NaOH solutions with 5<pH<10 and pH>10 were ZnO and Zn respectively. On the other hand, by increasing the temperature from 0 degC to 60 degC, larger particles were produced and their colloid was more stable. For characterizing nano-particle optical properties, structure, size and growth; UV-VIS absorbance and FTIR spectroscopy, and XRD were employed.
Keywords :
Fourier transform spectra; II-VI semiconductors; X-ray diffraction; colloids; infrared spectra; laser ablation; nanoparticles; pH; particle size; solvent effects; ultraviolet spectra; visible spectra; zinc; zinc compounds; FTIR spectroscopy; UV-VIS absorbance; X-ray diffraction; Zn; ZnO; aqueous solutions; deionized water; environment effect; ethanol; nanoparticle size control; nanoparticle stability; nanoparticle structure; pH; pulsed laser ablation; sodium hydroxide; wavelength 532 nm; zinc oxide; Ethanol; Laser ablation; Laser stability; Nanoparticles; Nanostructures; Optical pulses; Production; Size control; Temperature; Zinc oxide; Absorption spectrum; Laser ablation Nanoparticles; Size control; pH effect;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nanotechnology, 2007. IEEE-NANO 2007. 7th IEEE Conference on
Conference_Location :
Hong Kong
Print_ISBN :
978-1-4244-0607-4
Electronic_ISBN :
978-1-4244-0608-1
Type :
conf
DOI :
10.1109/NANO.2007.4601273
Filename :
4601273
Link To Document :
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