Perumal G, Geetha M, Asokamani R, Alagumurthi N (2014) Wear studies on plasma sprayed Al2O3–40 wt% 8YSZ composite ceramic coating on Ti–6Al–4V alloy used for biomedical applications. Wear 311(1-2):101–113
Zhao H, Huang Y, Zhang W, Guo Q, Cui W, Sun Z, Shi Q (2018) Mussel-inspired peptide coatings on titanium implant to improve osseointegration in osteoporotic condition. ACS Biomaterials Science & Engineering 4(7):2505–2515
Metikos-Huković M, Kwokal A, Piljac J (2003) The influence of niobium and vanadium on passivity of titanium-based implants in physiological solution. Biomaterials 24(21):3765–3775
Priyadarshini B, Rama M, Chetan, Vijayalakshmi U (2019) Bioactive coating as a surface modification technique for biocompatible metallic implants: a review. J Asian Ceramic Soc 7(4):397–406
Fellah M, Labaïz M, Assala O, Dekhil L, Taleb A, Rezag H, Iost A (2014) Tribological behavior of Ti-6Al-4V and Ti-6Al-7Nb Alloys for Total Hip Prosthesis. Adv Tribol 2014:1–13
Geetha M, Singh AK, Asokamani R, Gogia AK (2009) Ti based biomaterials, the ultimate choice for orthopaedic implants–a review. Prog Mater Sci 54(3):397–425
Bal BS, Rahaman MN (2012) Orthopedic applications of silicon nitride ceramics. Acta Biomater 8(8):2889–2898
Heimann RB (2021) Silicon nitride, a close to ideal ceramic material for medical application. Ceramics 4(2):208–223
Webster TJ, Patel AA, Rahaman MN, Bal BS (2012) Anti-infective and osteointegration properties of silicon nitride, poly (ether ether ketone), and titanium implants. Acta Biomater 8(12):4447–4454
Driver M (2012) Coatings for cardiovascular devices: Coronary stents. In: Coatings for biomedical applications. Woodhead Publishing, pp 223–250
Blázquez O, López-Vidrier J, Hernández S, Montserrat J, Garrido B (2014) Electro-optical properties of non-stoichiometric silicon nitride films for photovoltaic applications. Energy Procedia 44:145–150
Mazzocchi M, Bellosi A (2008) On the possibility of silicon nitride as a ceramic for structural orthopaedic implants. Part I: Processing, microstructure, mechanical properties, cytotoxicity. J Mater Sci Mater Med 19:2881–2887
Mazzocchi M, Gardini D, Traverso PL, Faga MG, Bellosi A (2008) On the possibility of silicon nitride as a ceramic for structural orthopaedic implants. Part II: Chemical stability and wear resistance in body environment. J Mater Sci Mater Med 19:2889–2901
Shankar S, Nithyaprakash R, Abbas G, Naveenkumar R, Prakash C, Pramanik A, Basak AK (2022) Tribological Behavior of AZ31 Alloy Against Si3N4 Using In-vitro and In-silico Submodeling Approach. Silicon:1–9
Zhou Y, Ohashi M, Tomita N, Ikeuchi K, Takashima K (1997) Study on the possibility of silicon nitride—Silicon nitride as a material for hip prostheses. Mater Sci Eng C 5:125–129
Goswami C, Bhat IK, Patnaik A, Singh T, Fekete G (2020) Fabrication of ceramic hip implant composites: influence of silicon nitride on physical, mechanical and wear properties. Silicon 12(5):1237–1245
Chang CL, Lin CT, Tsai PC, Ho WY, Liu WJ, Wang DY (2008) Mechanical and corrosion properties of (Ti, Si) N coating synthesized by cathodic arc plasma evaporation. Surf Coat Technol 202(22-23):5516–5520
Rafaja D, Wüstefeld C, Dopita M, Klemm V, Heger D, Schreiber G, Šíma M (2008) Formation of defect structures in hard nanocomposites. Surf Coat Technol 203(5-7):572–578
Bhure R, Mahapatro A (2010) Silicon based nanocoatings on metal alloys and their role in surface engineering. Silicon 2(3):117–151
Liu Z, An Q, Xu J, Chen M, Han S (2013) Wear performance of (nc-AlTiN)/(a-Si3N4) coating and (nc-AlCrN)/(a-Si3N4) coating in high-speed machining of titanium alloys under dry and minimum quantity lubrication (MQL) conditions. Wear 305(1-2):249–259
Ruggiero A, D’Amato R, Calvo R, Valašek P, Ungureanu N (2019) Measurements of the friction coefficient: Discussion on the results in the framework of the time series analysis. In Adv Manuf Eng Mat:443–455
Dumitru G, Romano V, Weber HP, Pimenov S, Kononenko T, Hermann J, Shupegin M (2003) Laser treatment of tribological DLC films. Diam Relat Mater 12(3-7):1034–1040
Anusha E, Kumar A, Shariff SM (2020) Diode laser surface treatment of bearing steel for improved sliding wear performance. Optik 206:163357. https://doi.org/10.1016/j.ijleo.2019.163357
Shukla P, Lawrence J (2014) University of Chester, Chester, UK. Proc Appl, Laser Surface Engineering, p 107
Petitbon A, Guignot D, Fischer U, Guillemot JM (1989) Laser surface treatment of ceramic coatings. Mat Sci Eng: A 120:545–548
Saravanan I, Perumal AE, Issac RF (2016) Wear study of cross-linked UHMWPE hybrid composite-TiN interface. Surfaces Interfaces 4:42–50
Gnanavel S, Ponnusamy S, Mohan L, Radhika R, Ramasubramanian K (2018) Electrochemical behavior of biomedical titanium alloys coated with diamond carbon in Hanks’ solution. J Mater Eng Perform 27(4):1635
Fang L, Gao P, Leng Y (2007) High strength and bioactive hydroxyapatite nano-particles reinforced ultrahigh molecular weight polyethylene. Compo Part B: Eng 38(3):345–351
Kok J, Širka A, Liu Y, Tarasevičius Š, Belickas J, Tägil M et al (2021) Augmenting a dynamic hip screw with a calcium sulfate/hydroxyapatite biomaterial. Med Eng Phys 92:102–109
Huang SH, Chen SF, Kuo YC, Wang CJ, Lee JW, Chan YC, Hsieh TE (2011) Mechanical and tribological properties evaluation of cathodic arc deposited CrN/ZrN multilayer coatings. Surf Coat Technol 206(7):1744–1752
Manikandan P, Elaya Perumal A, Franklin Issac R (2021) Mapping of wear mechanism for mechanical alloyed aluminum carbon nanotube composites – an in-situ analysis. J Tribol 143(2):21704. https://doi.org/10.1115/1.4047854
Gao Z, Zhang Z, Zhang X, Kulczyk-Malecka J, Liu H, Kelly P et al (2020) A conformable high temperature nitride coating for Ti alloys. Acta Mater 189:274–283
Kalisz M, Grobelny M, Zdrojek M, Świniarski M, Judek J (2015) Determination of structural, mechanical and corrosion properties of titanium alloy surface covered by hybrid system based on graphene monolayer and silicon nitride thin films. Thin Solid Films 583:212–220
Mishra TK, Kumar A, Sinha SK (2021) Experimental investigation and study of HVOF sprayed WC-12Co, WC-10Co-4Cr and Cr3C2-25NiCr coating on its sliding wear behaviour. Int J Refract Met Hard Mater 94:105404. https://doi.org/10.1016/j.ijrmhm.2020.105404
Kumar DD, Kumar N, Kalaiselvam S, Dash S, Jayavel R (2015) Substrate effect on wear resistant transition metal nitride hard coatings: microstructure and tribo-mechanical properties. Ceram Int 41(8):9849–9861
Kudrman J, Fousek J, Brezina V, Míková R, Vesely J (2007) Titanium alloys for implants in medicine. Kovove Materialy 45(4):199
Tian Z, Chen K, Sun S, Zhang J, Cui W, Xie Z, Liu G (2019) Synthesis of Si3N4 nanowires by catalyst-free nitridation of (Si+ SiO2) mixture. Micro Nano Letters 14(8):919–921
Wei J, Ong PL, Tay FE, Iliescu C (2008) A new fabrication method of low stress SiNx layers for biomedical applications. Thin Solid Films 516(16):5181
Majid S, Ahmad KS (2019) Analysis of dopant concentration effect on optical and morphological properties of PVD coated Cu-doped Ni3S2 thin films. Optik 187:152–163
Arias D, Devia A, Velez J (2010) Study of TiN/ZrN/TiN/ZrN multilayers coatings grown by cathodic arc technique. Surf Coat Technol 204(18-19):2999–3003
Kern P, Schwaller P, Michler J (2006) Electrolytic deposition of titania films as interference coatings on biomedical implants: microstructure, chemistry and nano-mechanical properties. Thin Solid Films 494(1-2):279–286
Young T (1805) III. An essay on the cohesion of fluids. Philos Trans R Soc Lond 95:65–87
Jaiswal J, Ramesh Chandra M, Sanger A, Kumar A, Mourya S, Chauhan S, Daipuriya R (2016) Enhanced optical absorbance of hydrophobic Ti thin film: role of surface roughness. Adv Mater Lett 7(6):485–490
Shen MX, Zhang ZX, Yang JT, Xiong GY (2019) Wetting behavior and tribological properties of polymer brushes on laser-textured surface. Polymers 11(6):981
Ochsner PE (2011) Osteointegration of orthopaedic devices. In Seminars in immunopathology (Vol. 33, No. 3, pp. 245-256). Springer-Verlag
Skjöldebrand C (2022) Silicon nitride-based coatings for biomedical implants (Doctoral dissertation, Acta Universitatis Upsaliensis)
Alizadeh M, Ganesh V, Goh BT, Dee CF, Mohmad AR, Rahman SA (2016) Effect of nitrogen flow rate on structural, morphological and optical properties of In-rich InxAl1− xN thin films grown by plasma-assisted dual source reactive evaporation. Appl Surf Sci 378:150–156
Filho L, Schmidt S, Leifer K, Engqvist H, Högberg H, Persson C (2019) Towards functional silicon nitride coatings for joint replacements. Coatings 9(2):73
Li H, Vlassak JJ (2009) Determining the elastic modulus and hardness of an ultra-thin film on a substrate using nanoindentation. J Mater Res 24(3):1114–1126
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