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12篇 您的检索式:作者名="Garrelie"
    题名 作者 年代 出处 被引量
1Monte Carlo simulation of the laser-induced plasma plume expansion under vacuum:Comparison experiments显示文摘GARRELIE F AUBRETON J CATHERINOT A 1998J Appl Phys1998,83,10:1
2Femtosecond pulsed laser deposition of diamond-like carbon thin films for tribological applications 显示文摘Garrelie F Loir A S Donnet C 2003Surface and Coatings Technology2003,,:1
3Femtosecond pulsed laser deposition of diamond- like carbon thin films for tribological applications 显示文摘GARRELIE F LOIR A DONNET C 2003Surface and Coatings Technology2003,163,2:1
4Nanostructured coatings of metal containing diamond-like carbon films deposited by femtosecond pulsed laser ablation显示文摘Benchikh N Garrelie F Donnet C 0,,22:1
5Mechanical and tribological characterization of tetrahedral diamond-like carbon deposited by femtosecond pulsed laser deposition on pre-treated orthopaedic biomaterials 显示文摘Loir A Garrelie F Donnet C 2005Applied Surface Science2005,247,1234:1
6Towards the deposition of tetrahedral diamond-like carbon films on hip joints by femtosecond pulsed laser ablation 显示文摘Loir A S Garrelie F Donnet C 2004Surface & Coatings Technology2004,,:1
7Single - and multi - pulse formation of surface structure under static femtosecond irradiation 显示文摘Guillermin M Garrelie F Sanner N 2007Applied Surface Science2007,,253:1
8显示文摘Loir A S Garrelie F Donnet C 2005Applied Surface Science2005,247,1:1
9Towards the deposition of tetrahedral diamond like carbon films on hip joints by femtosecond pulsed laser ablation显示文摘Loir A S Garrelie F Donnet C 2004Surface & Coatings Technology2004,,:1
10Monte Carlo simulation of the laser-induced plasma plume expansion under vacuum:comparison with experiments显示文摘GARRELIE F AUBRETON J CATHERINOT A 1998J Appl Phys1998,83,10:1
11Structure of diamond like carbon films depositedby femtosecond and nanosecond pulsed laser abla- tion显示文摘SIKORA A GARRELIE F DONNET C 2010J ApplPhys2010,108,11:1
12High-Density Nanowells Formation in Ultrafast Laser-Irradiated Thin Film Metallic Glass显示文摘We present an effective approach for fabricating nanowell arrays in a one-step laser process with promising applications for the storage and detection of chemical or biological elements.Biocompatible thin films of metallic glasses are manufactured with a selected composition of Zr_(65)Cu_(35),known to exhibit remarkable mechanical properties and glass forming ability.Dense nanowell arrays spontaneously form in the ultrafast laser irradiation spot with dimensions down to 20 nm.The flared shape observed by transmission electron microscopy is ideal to ensure chemical or biological material immobilization into the nanowells.This also indicates that the localization of the cavitation-induced nanopores can be tuned by the density and size of the initial nanometric interstice from the columnar structure of films deposited by magnetron sputtering.In addition to the topographic functionalization,the laser-irradiated amorphous material exhibits structural changes analyzed by spectroscopic techniques at the nanoscale such as energy-dispersive X-ray spectroscopy and electron energy loss spectroscopy.Results reveal structural changes consisting of nanocrystals of monoclinic zirconia that grow within the amorphous matrix.The mechanism is driven by local oxidation process catalyzed by extreme temperature and pressure conditions estimated by an atomistic simulation of the laser-induced nanowell formation.Mathilde Prudent Djafar Iabbaden Florent Bourquard Stéphanie Reynaud Yaya Lefkir Alejandro Borroto Jean-François Pierson Florence Garrelie Jean-Philippe Colombier 2022Nano-Micro Letters2022,14,6:0
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