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Nano-MoS2 Quantum Dots as Liquid Lubricant Additive for Tribo

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Nano-MoS2 Quantum Dots as Liquid Lubricant Additive for Tribo ( nano-mos2-quantum-dots-as-liquid-lubricant-additive-tribo )

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Nanomaterials 2020, 10, 200 12 of 12 13. Rabaso, P.; Ville, F.; Dassenoy, F.; Diaby, M.; Afanasiev, P.; Cavoret, J.; Vacher, B.; Le Mogne, T. Boundary lubrication: Influence of the size and structure of inorganic fullerene-like MoS2 nanoparticles on friction and wear reduction. Wear 2014, 320, 161–178. [CrossRef] 14. Pershin, V.; Ovchinnikov, K.; Alsilo, A.; Stolyarov, R.; Memetov, N. Development of Environmentally Safe Lubricants Modified by Grapheme. Nanotechnol. Russ. 2018, 13, 344–348. [CrossRef] 15. Chen, Z.; Liu, X.; Liu, Y.; Gunsel, S.; Luo, J. Ultrathin MoS2 nanosheets with superior extreme pressure property as boundary lubricants. Sci. Rep. 2015, 5, 12869. [CrossRef] 16. Zhang, W.; Cao, Y.; Tian, P.; Guo, F.; Tian, Y.; Zheng, W.; Ji, X.; Liu, J. Soluble, exfoliated two-dimensional nanosheets as excellent aqueous lubricants. Acs Appl. Mater. Int. 2016, 8, 32440–32449. [CrossRef] 17. Aldana, P.U.; Dassenoy, F.; Vacher, B.; Le Mogne, T.; Thiebaut, B. WS2 nanoparticles anti-wear and friction reducing properties on rough surfaces in the presence of ZDDP additive. Tribol. Int. 2016, 102, 213–221. [CrossRef] 18. Pawbake, A.S.; Waykar, R.G.; Late, D.J.; Jadkar, S.R. Highly Transparent Wafer-Scale Synthesis of Crystalline WS2 Nanoparticle Thin Film for Photodetector and Humidity-Sensing Applications. ACS Appl. Mater. Int. 2016, 8, 3359–3365. [CrossRef] 19. Gopalakrishnan, D.; Damien, D.; Shaijumon, M.M. MoS2 quantum dot-interspersed exfoliated MoS2 nanosheets. ACS Nano 2014, 8, 5297–5303. [CrossRef] 20. Gu, W.; Yan, Y.; Zhang, C.; Ding, C.; Xian, Y. One-step synthesis of water-soluble MoS2 quantum dots via a hydrothermal method as a fluorescent probe for hyaluronidase detection. ACS Appl. Mater. Int. 2016, 8, 11272–11279. [CrossRef] 21. Xu, S.; Li, D.; Wu, P. One-Pot, Facile, and Versatile Synthesis of Monolayer MoS2/WS2 Quantum Dots as Bioimaging Probes and Efficient Electrocatalysts for Hydrogen Evolution Reaction. Adv. Funct. Mater. 2015, 25, 127–1136. [CrossRef] 22. Wu, X.L.; Fan, J.Y.; Qiu, T.; Yang, X.; Siu, G.G.; Chu, P.K. Experimental evidence for the quantum confinement effect in 3C-SiC nanocrystallites. Phys. Rev. Lett. 2005, 94, 026102. [CrossRef] 23. Štengl, V.; Henych, J. Strongly luminescent monolayered MoS2 prepared by effective ultrasound exfoliation. Nanoscale 2013, 5, 3387–3394. [CrossRef] 24. Tangjie, M.; Junde, G.; Zhe, T.; Qiang, M.; Guangneng, D. Effects of Sliding Mode on Tribological Properties of Lubricating Oil with Surface-Modificated MoS2 Nanosheets and the Mechanism. J. Xi’an Jiaotong Univ. 2019, 53, 24–31. 25. Wu, H.; Johnson, B.; Wang, L.; Dong, G.; Yang, S.; Zhang, J. High-efficiency preparation of oil-dispersible MoS2 nanosheets with superior anti-wear property in ultralow concentration. J. Nanoparticle Res. 2017, 19, 339. [CrossRef] 26. Tannous, J.; Lahouij, I.; Mogne, T.L.; Vacher, B.; Bruhács, A.; Tremel, W. Understanding the Tribochemical Mechanisms of IF-MoS2 Nanoparticles Under Boundary Lubrication. Tribol. Lett. 2011, 41, 55–64. [CrossRef] 27. Lahouij, I.; Bucholz, E.W.; Vacher, B.; Sinnott, S.B.; Martin, J.M.; Dassenoy, F. Lubrication mechanisms of hollow-core inorganic fullerene-like nanoparticles: Coupling experimental and computational works. Nanotechnology 2012, 23, 375701. [CrossRef] 28. You, Y.L.; Li, D.X.; Si, G.J.; Deng, X. Investigation of the influence of solid lubricants on the tribological properties of polyamide 6 nanocomposite. Wear 2014, 311, 57–64. [CrossRef] 29. Yi, M.; Zhang, C. The synthesis of MoS2 particles with different morphologies for tribological applications. Tribol. Int. 2017, 116, 285–294. [CrossRef] 30. Xu, Y.; Jian, G.; Peng, Y.; Liu, Z.; Yu, J.; Hu, X. Lubricating mechanism of Fe3O4@MoS2 core-shell nanocomposites as oil additives for steel/steel contact. Tribol. Int. 2018, 121, 241–251. [CrossRef] 31. Guo, J.; Mei, T.; Li, Y.; Hafezi, M.; Lu, H.; Li, J.; Dong, G. One-pot synthesis and lubricity of fluorescent carbon dots applied on PCL-PEG-PCL hydrogel. J. Biomater. Sci. Polym. Ed. 2018, 29, 1549–1565. [CrossRef] © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).

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