Effects of laser fluence and liquid media on preparation of small Ag nanoparticles by laser ablation in liquid

被引:61
作者
Moura, Caroline Gomes [1 ]
Floriani Pereira, Rafael Santiago [1 ,2 ]
Andritschky, Martin [3 ]
Barros Lopes, Augusto Luis [4 ]
de Freitas Grilo, Joao Paulo [4 ]
do Nascimento, Rubens Maribondo [5 ]
Silva, Filipe Samuel [1 ]
机构
[1] Univ Minho, CMEMS, Campus Azurem, P-4800058 Guimaraes, Portugal
[2] Univ Fed Santa Catarina, Ceram & Composites Mat Res Ctr CERMAT, Campus Florianopolis, BR-88040900 Florianopolis, SC, Brazil
[3] Univ Minho, Dept Phys, Campus Azurem, P-4800058 Guimaraes, Portugal
[4] Univ Aveiro, Dept Mat & Ceram Engn, Aveiro, Portugal
[5] Univ Fed Rio Grande do Norte, Mat Sci & Engn Postgrad Program, BR-59078970 Natal, RN, Brazil
关键词
SILVER NANOPARTICLES; OPTICAL-PROPERTIES; ALLOY NANOPARTICLES; WAVELENGTH; GOLD; SIZE; WATER; AU; FRAGMENTATION; NANOMATERIALS;
D O I
10.1016/j.optlastec.2017.06.007
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
This study aims to assess a method for preparation of small and highly stable Ag nanoparticles by nanosecond laser ablation in liquid. Effect of liquid medium and laser fluence on the size, morphology and structure of produced nanoparticles has been studied experimentally. Pulses of a Nd:YAG laser of 1064 nm wavelength at 35 ns pulse width at different fluences were employed to irradiate the silver target in different environments (water, ethanol and acetone). The UV-Visible absorption spectra of nanoparticles exhibit surface plasmon resonance absorption peak in the UV region. STEM and TEM micrographs were used to evaluate the size and shape of nanoparticles. The stability of silver colloids in terms of oxidation at different liquid media was analyzed by SAED patterns. The results showed that characteristics of Ag nanoparticles and their production rate were strongly influenced by varying laser fluence and liquid medium. Particles from 2 to 80 nm of diameter were produced using different conditions and no oxidation was found in ethanol and acetone media. This work puts in evidence a promising approach to produce small nanoparticles by using high laser fluence energy. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:20 / 28
页数:9
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