Journal of Inorganic Materials, Volume. 34, Issue 4, 387(2019)
[2] ROBERTSON J. Diamond-like amorphous carbon[D]. Mater. Sci. Eng.B, 37, 129-281(2002).
[3] DAI W. Research on the synthesis, structure and properties of metal doped diamond-like carbon nanocomposite films[D]. New Technology & New Process, 7, 128-131(2015).
[4] ZHANG S, WU Y, ZHU L et al. Research progress of metal doped diamond-like carbon films[D]. Aeronautical Manufacturing Technology, 13, 77-82(2017).
[5] TAMULEVICIUS S, MESKINIS S, TAMULEVICIUS T et al. Diamond like carbon nanocomposites with embedded metallic nanoparticles[D]. Rep. Prog. Phys, 81(2018).
[6] PU J, WANG L, XUE Q. Progress in strengthening and toughening carbon-based films[D]. China Surface Engineering, 27, 4-27(2014).
[7] WU Y, CHEN J, LI H et al. Preparation and properties of Ag/DLC nanocomposite films fabricated by unbalanced magnetron sputtering[D]. Appl. Surf.Sci, 284, 165-170(2013).
[8] MAZARE A, ANGHEL A, SURDU-BOB C et al. Silver doped diamond-like carbon antibacterial and corrosion resistance coatings on titanium[D]. Thin Solid Films, 657, 16-23(2018).
[9] CONSTANTINOU M, PERVOLARAKI M, NIKOLAOU P et al. Microstructure and nanomechanical properties of pulsed excimer laser deposited DLC:Ag films: enhanced nanotribological response. Surf. Coat[D]. Technol, 309, 320-330(2017).
[10] DWIVEDI N, KUMAR S, CAREY J D et al. Influence of silver incorporation on the structural and electrical properties of diamond-like carbon thin films[D]. ACS Appl Mater Interfaces, 5, 2725-2732(2013).
[11] MEŠKINIS Š, VASILIAUSKAS A, ŠLAPIKAS K et al. Bias effects on structure and piezoresistive properties of DLC:Ag thin films[D]. Surf. Coat. Technol, 255, 84-89(2014).
[12] PEINER E, TIBREWALA A, BANDORF R et al. Diamond-like carbon for MEMS.[J]. Micromech. Microeng, 17, S83-S90(2007).
[13] CHUA D H C, MILNE W I, SHEEJA D et al. Fabrication of diamond- like amorphous carbon cantilever resonators[D]. J. Vac. Sci. Technol. B, 22, 2680-2684(2004).
[14] SARSEMBINOV S S, PRIKHODKO O Y, RYAGUZOV A P et al. Electronic properties of diamond-like carbon films modified by silver nanoclusters. Phys[D]. Status Solidi C, 7, 805-807(2009).
[15] ABDOLGHADERI S, ASTINCHAP B, SHAFIEKHANI A. Electrical percolation threshold in Ag-DLC nanocomposite films prepared by RF-sputtering and RF-PECVD in acetylene plasma[D]. J Mater Sci: Mater Electron, 27, 6713-6720(2016).
[16] MUSIL J, LOUDA M, SOUKUP Z et al. Relationship between mechanical properties and coefficient of friction of sputtered a-C/Cu composite thin films[D]. Diamond Relat. Mater, 17, 1905-1911(2008).
[17] MATSUNAMI N, YAMAMURA Y, ITIKAWA Y et al. Energy dependence of the ion-induced sputtering yields of monatomic solids[D]. At. Data Nucl.Data Tables, 31, 1-80(1984).
[18] SMENTKOWSKI V S. Trends in sputtering[D]. Prog. Surf. Sci, 64, 1-58(2000).
[19] TAKI T, TAKAI O. XPS structural characterization of hydrogenated amorphous carbon thin films prepared by shielded arc ion plating[D]. Thin Solid Films, 316, 45-50(1998).
[20] KIM H W, LEE N E. Conformal electroless filling of Cu into patterned amorphous carbon layer modified by oxygen plasma and aminosilane treatments[D]. J. Vac. Sci. Technol.B, 28, 715-719(2010).
[21] WARREN B E. X-ray diffraction, New edition[D]. US: Dover Publications(1990).
[22] FERRARI A C, ROBERTSON J. Interpretation of Raman spectra of disordered and amorphous carbon[D]. Phys. Rev.B, 61, 14095-14107(2000).
[23] FERRARI A C, ROBERTSON J. Resonant Raman spectroscopy of disordered,amorphous,diamondlike carbon[D]. Phys. Rev. B, 64(2001).
[24] CASIRAGHI C, FERRARI A C, ROBERTSON J. Raman spectroscopy of hydrogenated amorphous carbon[D]. Phys. Rev. B, 72(2005).
[25] ZOU C W, WANG H J, FENG L et al. Effects of Cr concentrations on the microstructure, hardness, and temperature-dependent tribological properties of Cr-DLC coatings[D]. Appl. Surf. Sci, 286, 137-141(2013).
[26] DAI W, KE P, MOON M W et al. Investigation of the microstructure, mechanical properties and tribological behaviors of Ti- containing diamond-like carbon films fabricated by a hybrid ion beam method[D]. Thin Solid Films, 520, 6057-6063(2012).
[27] QUAN J, ZHANG J, QI X et al. A study on the correlation between the dewetting temperature of Ag film and SERS intensity[D]. Sci. Rep, 7, 14771-14782(2017).
[28] GUO P, SUN L, LI X et al. Structural properties and surface wettability of Cu-containing diamond-like carbon films prepared by a hybrid linear ion beam deposition technique[D]. Thin Solid Films, 584, 289-293(2015).
[29] SINGH V, JIANG J C, MELETIS E I. Cr-diamondlike carbon nanocomposite films: synthesis, characterization and properties[D]. Thin Solid Films, 489, 150-158(2005).
[30] SONODA T, NAKAO S, IKEYAMA M. Deposition of Ti/C nano-composite DLC films by magnetron DC sputtering with dual targets[D]. Vacuum, 84, 666-668(2009).
[31] WANG A Y, LEE K R, AHN J P et al. Structure and mechanical properties of W incorporated diamond-like carbon films prepared by a hybrid ion beam deposition technique[D]. Carbon, 44, 1826-1832(2006).
[32] GUO P, LI X, SUN L et al. Stress reduction mechanism of diamond- like carbon films incorporated with different Cu contents[D]. Thin Solid Films, 640, 45-51(2017).
[33] DONNET C, ERDEMIR A. Tribology of Diamond-like Carbon Films[D]. US: Springer(2008).
[34] WAN C, ZHANG X, VANACKEN J et al. Electro- and magneto- transport properties of amorphous carbon films doped with iron[D]. Diamond Relat. Mater, 20, 26-30(2011).
[35] TAKENO T, MIKI H, TAKAGI T et al. Electrically conductive properties of tungsten-containing diamond-like carbon films[D]. Diamond Relat. Mater, 15, 1902-1905(2006).
[36] HUANG Q F, YOON S F, RUS LI et al. Conduction mechanism in molybdenum-containing diamond-like carbon deposited using electron cyclotron resonance chemical vapor deposition.[J]. Appl. Phys, 88, 4191-4195(2000).
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Ren-De CHEN, Peng GUO, Xiao ZUO, Shi-Peng XU, Pei-Ling KE, Ai-Ying WANG.
Category: RESEARCH PAPER
Received: Jun. 19, 2018
Accepted: --
Published Online: Sep. 24, 2021
The Author Email: Ai-Ying WANG (aywang@nimte.ac.cn)