Search Results - "Klini, A"
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1
Room temperature optical detection of ultra-low ozone concentration using photoluminescent ZnO nanohybrids
Published in Sensors and actuators. B, Chemical (15-05-2022)“…The highly sensitive room temperature (RT) photoluminescence (PL) emission of zinc oxide (ZnO) in the presence of ozone (O3) is demonstrated for the first…”
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2
Laser induced forward transfer of metals by temporally shaped femtosecond laser pulses
Published in Optics express (21-07-2008)“…Temporally shaped, femtosecond laser pulses have been used for controlling the size and the morphology of micron-sized metallic structures obtained by using…”
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3
Picosecond and subpicosecond pulsed laser deposition of Pb thin films
Published in Physical review special topics. PRST-AB. Accelerators and beams (01-09-2013)“…Pb thin films were deposited on Nb substrates by means of pulsed laser deposition (PLD) with UV radiation (248 nm), in two different ablation regimes:…”
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4
3D plasmonic transducer based on gold nanoparticles produced by laser ablation on silica nanowires
Published in Applied physics. A, Materials science & processing (01-05-2016)“…Silica two-dimensional substrates and nanowires (NWs) forests have been successfully decorated with Au nanoparticles (NPs) through laser ablation by using a…”
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5
Laser patterning of Zn for ZnO nanostructure growth: Comparison between laser induced forward transfer in air and in vacuum
Published in Thin solid films (15-10-2007)“…This study reports patterning of surfaces with Zn using the laser induced forward transfer (LIFT) technique and subsequent chemical growth of ZnO thin films…”
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Journal Article Conference Proceeding -
6
ZnO nanorod micropatterning via laser-induced forward transfer
Published in Applied physics. A, Materials science & processing (01-04-2007)Get full text
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7
Femtosecond laser deposition of TiO2 by laser induced forward transfer
Published in Thin solid films (30-07-2010)“…Femtosecond lasers have been used for laser induced forward transfer (LIFT) of TiO2, a wide-band semiconductor with many industrial and research applications…”
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8
Tuning spectral properties of ultrafast laser ablation plasmas from brass using adaptive temporal pulse shaping
Published in Optics express (24-05-2010)“…Using automated laser pulse temporal shaping we report on enhancing spectral emission characteristics of ablation plasmas produced by laser irradiation of…”
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9
Femtosecond pulsed laser deposition of biological and biocompatible thin layers
Published in Applied surface science (31-07-2007)“…In our study we investigate and report the femtosecond pulsed laser deposition of biological and biocompatible materials. Teflon, polyhydroxybutyrate,…”
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Journal Article Conference Proceeding -
10
Transition of crystalline orientation of yttria-stabilized zirconia films grown by pulsed laser deposition
Published in Applied physics. A, Materials science & processing (01-06-2008)“…We have synthesized 5 wt. %-yttria-stabilized zirconia (YSZ) films on stainless steel and glass substrates by pulsed laser deposition (PLD) at substrate…”
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11
Detailed studies of the plume deflection effect during sub-ps laser ablation of Si target
Published in Applied surface science (15-07-2005)“…For the first time the plume deflection effect during the irradiation of silicon target with sub-ps KrF laser pulses was investigated. The morphological…”
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Journal Article Conference Proceeding -
12
Growth and characterization of β-SiC films obtained by fs laser ablation
Published in Applied surface science (30-04-2006)“…We achieved the growth of cubic silicon carbide (SiC) films on (1 0 0)Si substrates by pulsed laser deposition (PLD) at moderate temperatures such as 750 °C,…”
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Journal Article Conference Proceeding -
13
Low-temperature growth of NiMnSb thin films by pulsed-laser deposition
Published in Applied physics letters (15-04-2002)“…We report the growth of thin films of the ferromagnetic half-Heusler alloy NiMnSb by pulsed-laser deposition on Si (111) and polycrystalline InAs substrates…”
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14
Double-peak droplet mass distribution observed during sub-ps laser ablation of Si targets
Published in Applied physics. A, Materials science & processing (01-08-2007)Get full text
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15
Femtosecond pulse shaping for phase and morphology control in PLD: Synthesis of cubic SiC
Published in Applied surface science (30-04-2006)“…Pulse shaping introduces the method that makes possible the production of tunable arbitrary shaped pulses. We extend this method to control the prevalent…”
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Journal Article Conference Proceeding -
16
Subpicosecond and enhanced nanosecond PLD to grow ZnO films in nitrogen ambient
Published in Surface & coatings technology (01-10-2005)“…The ZnO films were created by nanosecond and subpicosecond PLD in nitrogen–oxygen ambient for various deposition conditions and geometrical configurations. All…”
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Journal Article Conference Proceeding -
17
Laser printing of active optical microstructures
Published in Applied physics letters (12-02-2001)“…Optically activated indium oxide diffractive optical microstructures are demonstrated through a two step laser based fabrication method. Nonstoichiometric…”
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18
Electronic relaxation in PLD TiO2 films processed with femtosecond UV-laser
Published in Chemical physics letters (16-07-2024)“…[Display omitted] •PLD rutile-anatase TiO2 films were prepared.•LIPSS were produced on large-area films with femtosecond KrF (248 nm) laser.•Photoinduced…”
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19
Bonding configurations in amorphous carbon and nitrogenated carbon films synthesised by femtosecond laser deposition
Published in Applied physics. A, Materials science & processing (01-09-2004)“…The effect of nitrogen addition and laser fluence on the atomic structure of amorphous carbon films (a-C) synthesized by femtosecond pulsed laser deposition…”
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20
Growth of polycrystalline LaNi1-xCoxO3 (x = 0.3, 0.5) thin films on Si(100) by pulsed laser deposition
Published in Applied physics. A, Materials science & processing (01-08-2004)“…Polycrystalline LaNi1-xCoxO3 (x=0.5,0.3) thin films have been deposited on polished Si(100) substrates by pulsed laser deposition. The films are grown at 650 C…”
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