À propos de cet article

Citez

[1] Jacobs T., Morent R., de Geyter N., Leys C., J. Phys., 275 (2011), 1.JacobsT.MorentR.de GeyterN.LeysC.J. Phys2752011110.1088/1742-6596/275/1/012018Search in Google Scholar

[2] Khaleel K.I., Jasim A.S., Ahmed M.A. K., Vijay Y.K., Srivastava S., Int. J. Rec. Res. Rev., 3 (2012), 1.KhaleelK.I.JasimA.S.AhmedM.A.K.VijayY.K.SrivastavaS.Int. J. Rec. Res. Rev320121Search in Google Scholar

[3] Chan C.M., Ko T. M., Hiraoka H., Surf. Sci. Rep., 24 (1996), 1.ChanC.M.KoT. M.HiraokaH.Surf. Sci. Rep241996110.1016/0167-5729(96)80003-3Search in Google Scholar

[4] Theodorakos I., Zacharatos F., Geremia R., Karnakis D., Zergioti I., Appl. Surf. Sci., 336 (2015), 157.TheodorakosI.ZacharatosF.GeremiaR.KarnakisD.ZergiotiI.Appl. Surf. Sci336201515710.1016/j.apsusc.2014.10.120Search in Google Scholar

[5] Rezaei F., Shokri B., Sharifian M., Appl. Surf. Sci., 164 (2015), 471.RezaeiF.ShokriB.SharifianM.Appl. Surf. Sci164201547110.1016/j.apsusc.2015.08.069Search in Google Scholar

[6] Kim K.N., Lee S.M., Mishra A., Yeom G.Y., Thin Solid Films, 598 (2015), 315.KimK.N.LeeS.M.MishraA.YeomG.Y.Thin Solid Films598201531510.1016/j.tsf.2015.05.035Search in Google Scholar

[7] Junkar I., Vacuum, 98 (2013), 111.JunkarI.Vacuum98201311110.1016/j.vacuum.2012.11.006Search in Google Scholar

[8] Hegemann D., Brunner H., Oehr C., Nucl. Instr. Meth. B, 208 (2003), 281.HegemannD.BrunnerH.OehrC.Nucl. Instr. Meth. B208200328110.1016/S0168-583X(03)00644-XSearch in Google Scholar

[9] Peyrouxa j., Duboisa M., Tomasellaa E., Pe-TITA E., Flahaut D., Appl. Surf. Sci., 315 (2014), 426.PeyrouxaJ.DuboisaM.TomasellaaE.PetitaE.FlahautD.Appl. Surf. Sci315201442610.1016/j.apsusc.2014.05.163Search in Google Scholar

[10] Vesel A., Mozetic M., Vacuum, 86 (2012), 634.VeselA.MozeticM.Vacuum86201263410.1016/j.vacuum.2011.07.005Search in Google Scholar

[11] Pelagade S., Singh N.L., Shah S., Qureshi A., Rane R.S., Mukherjee S., Deshpande U.P., Ganesan V., Shripathi T., J. Phys., 208 (2010), 1.PelagadeS.SinghN.L.ShahS.QureshiA.RaneR.S.MukherjeeS.DeshpandeU.P.GanesanV.ShripathiT.J. Phys2082010110.1088/1742-6596/208/1/012107Search in Google Scholar

[12] Kolska Z., Reznickova A., Hnatowicz V., Svorcik V., Vacuum, 86 (2012), 643.KolskaZ.ReznickovaA.HnatowiczV.SvorcikV.Vacuum86201264310.1016/j.vacuum.2011.07.015Search in Google Scholar

[13] Kotal V., Svorcik V., Slepicka P., Sajdl P., Blahova O., Sutta P., Hnatowicz V., Plasma Process. Polym., 4 (2007), 69.KotalV.SvorcikV.SlepickaP.SajdlP.BlahovaO.SuttaP.HnatowiczV.Plasma Process. Polym420076910.1002/ppap.200600069Search in Google Scholar

[14] Bismarck A., Brostow W., Chiu R., Lobland H.E., Ho K.K.C., Polym. Eng. Sci., (2008), 1971.BismarckA.BrostowW.ChiuR.LoblandH.E.HoK.K.C.Polym. Eng. Sci2008197110.1002/pen.21103Search in Google Scholar

[15] Vandencasteele N., Reniers F., J. Electron Spectrosc, 178–179 (2010), 394.VandencasteeleN.ReniersF.J. Electron Spectrosc178–179201039410.1016/j.elspec.2009.12.003Search in Google Scholar

[16] Tendero C., Tixier C., Tristant P., Desmai-SON J., Leprince P., Spectrochim. Acta B, 61 (2006), 2.TenderoC.TixierC.TristantP.DesmaisonJ.LeprinceP.Spectrochim. Acta B612006210.1016/j.sab.2005.10.003Search in Google Scholar

[17] Bardos L., Barankowva H., Thin Solid Films, 518 (2010), 6705.BardosL.BarankowvaH.Thin Solid Films5182010670510.1016/j.tsf.2010.07.044Search in Google Scholar

[18] Deynse van A., Cools P., Leys C., Morent R., geyter DE N., Surf. Coat. Tech., 258 (2014), 359.Deynse vanA.CoolsP.LeysC.MorentR.Geyter deN.Surf. Coat. Tech258201435910.1016/j.surfcoat.2014.08.073Search in Google Scholar

[19] Yoshida S., Hagiwara K., Hasebe T., Hotta A., Surf. Coat. Tech., 233 (2013), 99.YoshidaS.HagiwaraK.HasebeT.HottaA.Surf. Coat. Tech23320139910.1016/j.surfcoat.2013.02.042Search in Google Scholar

[20] Junkar I., Vesel A., Cvelbar U., Mozetic M., STRAND S., Vacuum, 84 (2010), 83.JunkarI.VeselA.CvelbarU.MozeticM.StrandS.Vacuum8420108310.1016/j.vacuum.2009.04.011Search in Google Scholar

[21] Hunke H., Soin N., Gebhard A., Shah T., Kramer E., Witan K., Narasimulu A.A., Siores E., Wear, 338 - 339 (2015), 122.HunkeH.SoinN.GebhardA.ShahT.KramerE.WitanK.NarasimuluA.A.SioresE.Wear338 - 339201512210.1016/j.wear.2015.06.003Search in Google Scholar

[22] Borcia C., Punga I.L., Borcia G., Appl. Surf. Sci., 317 (2014), 103.BorciaC.PungaI.L.BorciaG.Appl. Surf. Sci317201410310.1016/j.apsusc.2014.08.066Search in Google Scholar

[23] Slepicka P., Mala Z., Rimpelova S., Slepickova Kasalkova N., Svorcik V., React. Funct. Polym., 95 (2015), 71.SlepickaP.MalaZ.RimpelovaS.Slepickova KasalkovaN.SvorcikV.React. Funct. Polym9520157110.1016/j.reactfunctpolym.2015.08.010Search in Google Scholar

[24] Bormashenko E., Whyman G., Multanen V., Sulzinger E., Chaniel G., J. Colloid Interf. Sci., 448 (2015), 175.BormashenkoE.WhymanG.MultanenV.SulzingerE.ChanielG.J. Colloid Interf. Sci448201517510.1016/j.jcis.2015.02.025Search in Google Scholar

[25] Slepicka P., Vasina A., Kolska Z., Luxbacher T., Malinsky P., Mackova A., Svorcik V., Nucl. Instr. Meth. B, 268 (2010), 2111.SlepickaP.VasinaA.KolskaZ.LuxbacherT.MalinskyP.MackovaA.SvorcikV.Nucl. Instr. Meth. B2682010211110.1016/j.nimb.2010.02.012Search in Google Scholar

[26] Trepilowski K., Rymuszka D., Holysz L., Chi-BOWSKI E., Ariel. Ac. Il, (2014), 155.TrepilowskiK.RymuszkaD.HolyszL.ChibowskiE.Ariel. Ac. Il2014155Search in Google Scholar

[27] Jokinen V., Suvanto P., Franssila S., Biomicrofluidics, 6 (2012), 016501–1.JokinenV.SuvantoP.FranssilaS.Biomicrofluidics62012016501110.1063/1.3673251Search in Google Scholar

[28] Zhou X. L., Chen A. F., Liu j. C., Wu X. K., Zhang J. S., Surf. Coat. Tech., 206 (2011), 132.ZhouX. L.ChenA. F.LiuJ. C.WuX. K.ZhangJ. S.Surf. Coat. Tech206201113210.1016/j.surfcoat.2011.07.005Search in Google Scholar

[29] Kwok D. Y., Neumann A. W., Adv. Colloid Interfac., 81 (1999), 167.KwokD. Y.NeumannA. W.Adv. Colloid Interfac81199916710.1016/S0001-8686(98)00087-6Search in Google Scholar

[30] Wojcieszak D., Kaczmarek D., Antosiak A., Mazur M., Rybak Z., Rusak A., Osekowska M., Poniedzialek A., Gamian A., Szponar B., Mat. Sci. Eng. C-Mater., 56 (2015), 48.WojcieszakD.KaczmarekD.AntosiakA.MazurM.RybakZ.RusakA.OsekowskaM.PoniedzialekA.GamianA.SzponarB.Mat. Sci. Eng. C-Mater5620154810.1016/j.msec.2015.06.01326249564Search in Google Scholar

[31] ISO/TC 172/S9C 7/WG 3N30 Standard, Spectacle Lenses: Test Method for Abrasion Resistance, 1998.ISO/TC 172/S9C 7/WG 3N30Standard, Spectacle Lenses: Test Method for Abrasion Resistance1998Search in Google Scholar

[32] Mazur M., SzymaNska M., Kaczmarek D., Kalisz M., Wojcieszak D., Domaradzki j., Placido F., Appl. Surf. Sci., 301 (2014), 63.MazurM.SzymańskaM.KaczmarekD.KaliszM.WojcieszakD.DomaradzkiJ.PlacidoF.Appl. Surf. Sci30120146310.1016/j.apsusc.2014.01.144Search in Google Scholar

[33] Sarani A., Geyter de N., Nikifrov A.Y., Morent R., Leys C., Hubert j., Reniers F., Surf. Coat. Tech., 206 (2012), 2226.SaraniA.Geyter deN.NikifrovA.Y.MorentR.LeysC.HubertJ.ReniersF.Surf. Coat. Tech2062012222610.1016/j.surfcoat.2011.09.070Search in Google Scholar

[34] Wang C., Chen J.R., Appl. Surf. Sci., 253 (2007), 4599.WangC.ChenJ.R.Appl. Surf. Sci2532007459910.1016/j.apsusc.2006.10.014Search in Google Scholar

eISSN:
2083-134X
Langue:
Anglais