Laser Plasma Induced TiO2 Nanoparticle Synthesis in Water and Particle Characterization

Синтез наночастиц TiO₂ в воде с использованием лазерной плазмы и характеристика частиц
Magesh T. Rajan, Rizbi Hassan
2019-01-01

Nd:YAG laser ablationTiO2 nanoparticle synthesisanatase and rutile phaseslaser-induced plasmawater-based nanofluids
Nanofluids with nanoscale colloidal suspensions having condensed nanomaterials have been found to show highly enhanced physical, chemical, thermal, and transport properties and signify great potential in many fields. In this paper, laser-induced plasmas at liquid-metal phase boundaries are investigated for titanium oxide (TiO2) nanoparticle synthesis in water without any surfactants. The nanoparticles are generated using 1064 nm NdYAG laser ablation in a water confined plasma with 1.5 J laser energy pulsed at 10 Hz for 4 min, which resulted in nanoparticles of size ranging from 5 to 35 nm. The synthesized TiO2nanoparticles in water are characterized for their sizes, surface morphology, crystalline structures, and elemental compositions. The dynamic light scattering (DLS) measurements show the synthesized TiO2nanoparticles have an average size of 18 nm. The scanning electron microscopy (SEM) measurements show TiO2nanoparticles exhibit isolated and agglomerated nanoparticles with near-spherical and irregular surface morphologies. The Transmission electron microscopy (TEM) measurements show TiO2nanoparticles with near-spherical and irregular shapes, and the average size of the nanoparticles is ~17 nm. The selected area electron diffraction (SAED) measurements show single and poly crystalline structures present in the TiO2nanoparticles. The energy-dispersive X-ray spectroscopy (EDX) measurements show the purity of TiO2nanoparticles with identification of Ti and O elements. The X-ray diffraction (XRD) measurements confirm that the TiO2nanoparticles are crystalline in nature and confirmed the presence and coexistence of two crystal phases of TiO2nanoparticles, such as anatase and rutile phases, and estimated nanoparticle size in the range between 11 and 31 nm.
1
A surfactant-free laser-induced plasma method synthesized TiO2 nanoparticles in water using 1064 nm Nd:YAG laser ablation at a liquid-metal phase boundary.
2
SAED identified both single-crystalline and polycrystalline structures, while EDX confirmed titanium and oxygen elemental composition and nanoparticle purity.
3
SEM and TEM revealed isolated and agglomerated nanoparticles with near-spherical and irregular morphologies.
4
The synthesis produced TiO2 nanoparticles ranging from 5 to 35 nm, with average sizes of 18 nm by DLS and approximately 17 nm by TEM.
5
XRD confirmed crystalline TiO2 containing coexisting anatase and rutile phases, with estimated particle sizes of 11–31 nm.

Laser-synthesized TiO2 nanoparticles in water

The nanoparticles’ size, morphology, crystalline structure, elemental composition, and coexisting anatase and rutile phases

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2019-01-01
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Magesh T. Rajan
Rizbi Hassan
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