Surface-modified Pd nanoparticles as a superior additive for lubrication

Łukasz Kołodziejczyk1, D. Martínez-Martínez1, T.C. Rojas1, A. Fernández1, J.C. Sánchez-López1
1Instituto de Ciencia de Materiales de Sevilla, Centro Mixto CSIC-US, Avda. Americo Vespucio, 49, Isla de la Cartuja, Sevilla, 41092, Spain

Tóm tắt

Từ khóa


Tài liệu tham khảo

Antler M. 1999. Electrical Contact (ed. Slade P.G.). Marcel Dekker, New York, pp. 179–202.

Baker I.L., Singleterry C.R., Solomon E.M. (1954) Neutral and basic sulfonates. Ind. Eng. Chem. 46:1035–1942

Bakunin V.N., Suslov A.Y., Kuzmina G.N., Parenago O.P. (2004). Synthesis and application of inorganic nanoparticles as lubricant components - a review. J. Nano. Res. 6(2–3):273–284

Chhowalla M., Amaratunga G.A.J. (2000). Thin films of fullerene-like MoS2 nanoparticles with ultra-low friction and wear. Nature 407:164–167

Chinas-Castillo F., Spikes H.A. (2000). Film formation by colloidal overbased detergents in lubricated contacts. Tribol. Trans. 43(3):357–366

Cohen S.R., Y. Feldman, H. Cohen & R. Tenne, 1999. Nanotribology of novel metal dichalcogenides. Appl. Surf. Sci. 144–145, 603–607.

Donnet C., Martin J.M., Le Mogne T., Belin M. (1996). Super-low friction of MoS2 coatings in various environments. Tribol. Int. 29(2):123–128

Fendler J.H., Meldrum F.C. (1995). The colloid-chemical approach to nanostructured materials. Adv. Mater. 7(7):607–632

Greenberg R., Halperin G., Etsion I., Tenne R. (2004). The effect of WS2 nanoparticles on friction reduction in various lubrication regimes. Tribol. Lett. 17(2):179–186

Jayaram G., Marks L.D., Hilton M.R. (1995). Nanostructure of Au-20%Pd layers in MoS2 multilayer solid lubricant films. Surf. Coat. Technol. 77(1–3):393–399

Krastev I., N. Petkova & A. Zielonka, 2002. Properties of silver-antimony alloys electrodeposited from ferrocyanide-thiocyanate electrolytes. J. Appl. Electrochem. 32(7), 811–818

Hannel S., Fouvry S., Kapsa Ph., Vincent L. (2001). The fretting sliding transition as a criterion for electrical contact performance. Wear 249:761–770

Li H., Zhang S.M., Wu Z.S., Zhang Z.J., Dang H.X. (2006). Ag nanoparticles: preparation in functional ionic liquid and friction properties. Chinese J. Inorg. Chem. 22(1):65–68

Liu W., Zhang Z., Chen S., Xue Q. (2000). The research and application of colloids as lubricants. J. Disp. Sci. Technol. 21(4):469–490

Qiu S.Q., Zhou Z.R., Dong J.X., Chen G.X. (2001). Preparation of Ni nanoparticles and evaluation of their tribological performance as potential additives in oils. J. Tribol. Trans. ASME 123(3):441–443

Rapoport L., Billik Y., Feldman Y., Homoyonfer M., Cohen S.R., Tenne R. (1997). Hollow nanoparticles of WS2 as potential solid-state lubricants. Nature 387:791–793

Rapoport L., Fleischer N., Tenne R. (2003). Fullerene-like WS2 nanoparticles: superior lubricants for harsh conditions. Adv. Mater. 15(7–8):651–655

Rapoport L., V. Leshchinsky, Yu. Volovik, M. Lvovsky, O. Nepomnyashchy, Y. Feldman, R. Popovitz-Biro & R. Tenne, 2003. Modification of contact surfaces by fullerene-like solid lubricant nanoparticles. Surf. Coat. Technol. 163–164, 405–412.

Reetz M.T., Maase M. (1999). Redox-controlled size-selective fabrication of nanostructured transition metal colloids. Adv. Mater. 11(9):773–777

Sánchez-López J.C., Belin M., Donnet C., Quirós C., Elizalde E. (2002). Friction mechanisms of amorphous carbon nitride films under variable environments: a triboscopic study. Surf. Coat. Technol. 160:138–144

Sánchez-López J.C., A. Erdemir, C. Donnet & T.C. Rojas, 2003. Friction-induced structural transformations of diamondlike carbon coatings under various atmospheres. Surf. Coat. Technol. 163–164, 444–450.

Sánchez-López J.C., & L. Kolodziejczyk, D., Martínez-Martínez, A., Fernández T.C., Rojas, R., Litrán, 2005. PCT application Nr. PCT/ES2006/070045

Subramonian B., K. Kato, K. Adachi & B. Basu 2005. Experimental evaluation of friction and wear properties of solid lubricant coatings on SUS440C steel in liquid nitrogen. Tribol. Lett. 20 (3–4), 263–272

Zhang Z., Xue Q., Zhang J. (1997). Synthesis, structure and lubricating properties of dialkyldithiophosphate-modified Mo-S compound nanoclusters. Wear 209:8–12

Zhao Y., Zhang Z., Dang H. (2004). Fabrication and tribological properties of Pb nanoparticles. J. Nano. Res. 6:47–51

Zhou J., Wu Z., Zhang Z., Liu W., Xue Q. (2000). Tribological behavior and lubricating mechanism of Cu nanoparticles in oil. Tribol. Lett. 8(4):213–218