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Nanostructuring of GeTiO amorphous films by pulsed laser irradiation.
Teodorescu, Valentin Serban; Ghica, Cornel; Maraloiu, Adrian Valentin; Vlaicu, Mihai; Kuncser, Andrei; Ciurea, Magdalena Lidia; Stavarache, Ionel; Lepadatu, Ana M; Scarisoreanu, Nicu Doinel; Andrei, Andreea; Ion, Valentin; Dinescu, Maria.
Afiliação
  • Teodorescu VS; National Institute of Materials Physics, 105 bis Atomistilor Street, 077125 Bucharest-Magurele, Romania.
  • Ghica C; National Institute of Materials Physics, 105 bis Atomistilor Street, 077125 Bucharest-Magurele, Romania.
  • Maraloiu AV; National Institute of Materials Physics, 105 bis Atomistilor Street, 077125 Bucharest-Magurele, Romania.
  • Vlaicu M; National Institute of Materials Physics, 105 bis Atomistilor Street, 077125 Bucharest-Magurele, Romania.
  • Kuncser A; National Institute of Materials Physics, 105 bis Atomistilor Street, 077125 Bucharest-Magurele, Romania.
  • Ciurea ML; National Institute of Materials Physics, 105 bis Atomistilor Street, 077125 Bucharest-Magurele, Romania ; Academy of Romanian Scientists, Bucuresti 050094, Romania.
  • Stavarache I; National Institute of Materials Physics, 105 bis Atomistilor Street, 077125 Bucharest-Magurele, Romania.
  • Lepadatu AM; National Institute of Materials Physics, 105 bis Atomistilor Street, 077125 Bucharest-Magurele, Romania.
  • Scarisoreanu ND; National Institute of Plasma Lasers and Radiation, 409 Atomistilor Street, 077125 Bucharest-Magurele, Romania.
  • Andrei A; National Institute of Plasma Lasers and Radiation, 409 Atomistilor Street, 077125 Bucharest-Magurele, Romania.
  • Ion V; National Institute of Plasma Lasers and Radiation, 409 Atomistilor Street, 077125 Bucharest-Magurele, Romania.
  • Dinescu M; National Institute of Plasma Lasers and Radiation, 409 Atomistilor Street, 077125 Bucharest-Magurele, Romania.
Beilstein J Nanotechnol ; 6: 893-900, 2015.
Article em En | MEDLINE | ID: mdl-25977860
ABSTRACT
Laser pulse processing of surfaces and thin films is a useful tool for amorphous thin films crystallization, surface nanostructuring, phase transformation and modification of physical properties of thin films. Here we show the effects of nanostructuring produced at the surface and under the surface of amorphous GeTiO films through laser pulses using fluences of 10-30 mJ/cm(2). The GeTiO films were obtained by RF magnetron sputtering with 5050 initial atomic ratio of GeTiO2. Laser irradiation was performed by using the fourth harmonic (266 nm) of a NdYAG laser. The laser-induced nanostructuring results in two effects, the first one is the appearance of a wave-like topography at the film surface, with a periodicity of 200 nm and the second one is the structure modification of a layer under the film surface, at a depth that is related to the absorption length of the laser radiation. The periodicity of the wave-like relief is smaller than the laser wavelength. In the modified layer, the Ge atoms are segregated in spherical amorphous nanoparticles as a result of the fast diffusion of Ge atoms in the amorphous GeTiO matrix. The temperature estimation of the film surface during the laser pulses shows a maximum of about 500 °C, which is much lower than the melting temperature of the GeTiO matrix. GeO gas is formed at laser fluences higher than 20 mJ/cm(2) and produces nanovoids in the laser-modified layer at the film surface. A glass transition at low temperatures could happen in the amorphous GeTiO film, which explains the formation of the wave-like topography. The very high Ge diffusivity during the laser pulse action, which is characteristic for liquids, cannot be reached in a viscous matrix. Our experiments show that the diffusivity of atomic and molecular species such as Ge and GeO is very much enhanced in the presence of the laser pulse field. Consequently, the fast diffusion drives the formation of amorphous Ge nanoparticles through the segregation of Ge atoms in the GeTiO matrix. The nanostructuring effects induced by the laser irradiation can be used in functionalizing the surface of the films.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2015 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2015 Tipo de documento: Article