In-situ formation of nitrogen doped microporous carbon nanospheres derived from polystyrene as lubricant additives for anti-wear and friction reduction

Shahnazar S, Bagheri S, Abd Hamid S B. Enhancing lubricant properties by nanoparticle additives. Int J Hydrog Energy 41(4): 3153–3170 (2016)

Article  Google Scholar 

Dai W, Kheireddin B, Gao H, Liang H. Roles of nanoparticles in oil lubrication. Tribol Int 102: 88–98 (2016)

Article  Google Scholar 

Ali I, Basheer A, Kucherova A, Memetov N, Pasko T, Ovchinnikov K, Pershin V, Kuznetsov D, Galunin E, Grachev V, et al. Advances in carbon nanomaterials as lubricants modifiers. J Mol Liq 279: 251–266 (2019)

Article  Google Scholar 

Ali M K A, Hou X J, Abdelkareem M A A. Anti-wear properties evaluation of frictional sliding interfaces in automobile engines lubricated by copper/graphene nanolubricants. Friction 8(5): 905–916 (2020)

Article  Google Scholar 

Cui Y H, Xue S H, Chen X, Bai W, Liu S J, Ye Q, Zhou F. Fabrication of two-dimensional MXene nanosheets loading Cu nanoparticles as lubricant additives for friction and wear reduction. Tribol Int 176: 107934 (2022)

Article  Google Scholar 

Zhao J H, Yang G B, Zhang Y J, Zhang S M, Zhang C L, Gao C P, Zhang P Y. Controllable synthesis of different morphologies of CuO nanostructures for tribological evaluation as water-based lubricant additives. Friction 9(5): 963–977 (2021)

Article  Google Scholar 

Patil H H, Pawar G B, Mali P V, Ballal Y P, Gondkar V S. Enhancement of tribological properties by adding titanium dioxide (TiO2) nanoparticles in mineral based SN-500 oil. Mater Today Proc 59: 128–133 (2022)

Article  Google Scholar 

Xu Y, Hu E Z, Hu K H, Xu Y F, Hu X G. Formation of an adsorption film of MoS2 nanoparticles and dioctyl sebacate on a steel surface for alleviating friction and wear. Tribol Int 92: 172–183 (2015)

Article  Google Scholar 

Cui Y H, Xue S H, Wang S Y, Chen X, Liu S J, Ye Q, Zhou F, Liu W M. Fabrication of carbon dots intercalated MXene hybrids via laser treatment as oil-based additives for synergistic lubrication. Carbon 205: 373–382 (2023)

Article  Google Scholar 

Yang H M, Li J S, Zeng X Q. Tribological behavior of nanocarbon materials with different dimensions in aqueous systems. Friction 8(1): 29–46 (2020)

Article  Google Scholar 

Wu P, Chen X C, Zhang C H, Zhang J P, Luo J B, Zhang J Y. Modified graphene as novel lubricating additive with high dispersion stability in oil. Friction 9(1): 143–154 (2021)

Article  Google Scholar 

He T X, Chen N C, Fang J H, Cai G X, Wang J, Chen B S, Liang Q L. Micro/nano carbon spheres as liquid lubricant additive: Achievements and prospects. J Mol Liq 357: 119090 (2022)

Article  Google Scholar 

Panickar R, Sobhan C B, Chakravorti S. Investigations on tribological properties of non-catalytic CVD synthesized carbon spheres in lubricant. Diam Relat Mater 106: 107834 (2020)

Article  Google Scholar 

Wu C W, Wei C X, Jin X, Akhtar R, Zhang W. Carbon spheres as lubricant additives for improving tribological performance of polyetheretherketone. J Mater Sci 54(6): 5127–5135 (2019)

Article  Google Scholar 

Ye Q A, Liu S, Xu F, Zhang J, Liu S J, Liu W M. Nitrogen-phosphorus codoped carbon nanospheres as lubricant additives for antiwear and friction reduction. ACS Appl Nano Mater 3(6): 5362–5371 (2020)

Article  Google Scholar 

Jaiswal V, Kalyani, Umrao S, Rastogi R B, Kumar R, Srivastava A. Synthesis, characterization, and tribological evaluation of TiO2-reinforced boron and nitrogen co-doped reduced graphene oxide based hybrid nanomaterials as efficient antiwear lubricant additives. ACS Appl Mater Interfaces 8(18): 11698–11710 (2016)

Article  Google Scholar 

Wang B B, Hu E Z, Tu Z Q, David K D, Hu K H, Hu X G, Yang W, Guo J H, Cai W M, Qian W L, et al. Characterization and tribological properties of rice husk carbon nanoparticles Co-doped with sulfur and nitrogen. Appl Surf Sci 462: 944–954 (2018)

Article  Google Scholar 

Xiong S, Zhang B S, Luo S, Wu H, Zhang Z. Preparation, characterization, and tribological properties of silica-nanoparticle-reinforced B-N-co-doped reduced graphene oxide as a multifunctional additive for enhanced lubrication. Friction 9(2): 239–249 (2021)

Article  Google Scholar 

Nie T M, Yuan Z Y, Yin S, Tu W R, Yan W L, Gao J J, Jiang X M. Thermal behavior of crosslinking polystyrene resin to carbon material by one-step carbonization. J Porous Mater 27(1): 249–261 (2020)

Article  Google Scholar 

Chen X Y, Cheng X B, Liu Z G. High sulfur-doped hard carbon anode from polystyrene with enhanced capacity and stability for potassium-ion storage. J Energy Chem 68: 688–698 (2022)

Article  Google Scholar 

Ke P, Zeng D, Xing H, Cui J, Li X, Qin R. Research progress of nitrogen-doped modified carbon materials. Appl Chem Ind 49: 1818–1822 (2020)

Google Scholar 

Wang Y X, Zhang T T, Qiu Y Q, Guo R S, Xu F, Liu S J, Ye Q, Zhou F. Nitrogen-doped porous carbon nanospheres derived from hyper-crosslinked polystyrene as lubricant additives for friction and wear reduction. Tribol Int 169: 107458 (2022)

Article  Google Scholar 

Ouyang Y, Shi H M, Fu R W, Wu D C. Highly monodisperse microporous polymeric and carbonaceous nanospheres with multifunctional properties. Sci Rep 3: 1430 (2013)

Article  Google Scholar 

Qiu Y, Liu Q, Han H, Yu T, Wang H, Xu F. Design and preparation of polystyrene-based porous polymers with triazine crosslinker. J Funct Polym 33: 554–562 (2020)

Google Scholar 

Liu B, Chen H B, Yang M, Liu Y J, Li H M. Flexible solid-state supercapacitors with outstanding capacitive performance enabled by N/B-codoped porous carbon nanosheets. ACS Appl Energy Mater 4(8): 7552–7561 (2021)

Article  Google Scholar 

Oyama K, Seike M, Mitamura K, Watase S, Suzuki T, Omura T, Minami H, Hirai T, Nakamura Y, Fujii S. Monodispersed nitrogen-containing carbon capsules fabricated from conjugated polymer-coated particles via light irradiation. Langmuir 37(15): 4599–4610 (2021)

Article  Google Scholar 

Sahoo B N, Kandasubramanian B. Photoluminescent carbon soot particles derived from controlled combustion of camphor for superhydrophobic applications. RSC Adv 4(22): 11331–11342 (2014)

Article  Google Scholar 

Poh H L, Šimek P, Sofer Z, Pumera M. Sulfur-doped graphene via thermal exfoliation of graphite oxide in H2S, SO2, or CS2 gas. ACS Nano 7(6): 5262–5272 (2013)

Article  Google Scholar 

Xue S H, Cui Y H, Chen X, Shi J Q, Liu S J, Ye Q, Zhou F. Zwitterionic dopamine sulfonate functionalized carbon quantum dots as water-based lubricant additive for friction and wear reduction. Appl Surf Sci 615: 156411 (2023)

Article  Google Scholar 

Lee K, Hwang Y, Cheong S, Choi Y, Kwon L, Lee J, Kim S H. Understanding the role of nanoparticles in nano-oil lubrication. Tribol Lett 35(2): 127–131 (2009)

Article  Google Scholar 

Rudge RED, Theunissen K, Stokes J R, Scholten E, Dijksman J A. Tribology of hard particles lubricating soft surfaces. Phys Rev Materials 5(5): 055604 (2021)

Article  Google Scholar 

Lu Q, Zhang T T, He B L, Xu F, Liu S J, Ye Q, Zhou F. Enhanced lubricity and anti-wear performance of zwitterionic polymer-modified N-enriched porous carbon nanosheets as water-based lubricant additive. Tribol Int 167: 107421 (2022)

Article  Google Scholar 

Wen P, Lei Y Z, Yan Q Q, Han Y Y, Fan M J. Multilayer tribofilm: An unique structure to strengthen interface tribological behaviors. ACS Appl Mater Interfaces 13(9): 11524–11534 (2021)

Article  Google Scholar 

Shang W J, Ye M T, Cai T, Zhao L N, Zhang Y X, Liu D, Liu S G. Tuning of the hydrophilicity and hydrophobicity of nitrogen doped carbon dots: A facile approach towards high efficient lubricant nanoadditives. J Mol Liq 266: 65–74 (2018)

Article  Google Scholar 

Gao J D, Du C F, Zhang T T, Zhang X Z, Ye Q A, Liu S J, Liu W M. Dialkyl dithiophosphate-functionalized Ti3C2Tx MXene nanosheets as effective lubricant additives for antiwear and friction reduction. ACS Appl Nano Mater 4(10): 11080–11087 (2021)

Article  Google Scholar 

He B L, Liu S, Zhao X Y, Liu J X, Ye Q A, Liu S J, Liu W M. Dialkyl dithiophosphate-functionalized gallium-based liquid-metal nanodroplets as lubricant additives for antiwear and friction reduction. ACS Appl Nano Mater 3(10): 10115–10122 (2020)

Article  Google Scholar 

Zhang T T, Liu S, Zhang X Z, Gao J D, Yu H, Ye Q A, Liu S J, Liu W M. Fabrication of two-dimensional functional covalent organic frameworks via the thiol-ene “click” reaction as lubricant additives for antiwear and friction reduction. ACS Appl Mater Interfaces 13(30): 36213–36220 (2021)

Article  Google Scholar 

Ye Q, Liu S, Zhang J, Xu F, Zhou F, Liu W M. Superior lubricity and antiwear performances enabled by porous carbon nanospheres with different shell microstructures. ACS Sustainable Chem Eng 7(14): 12527–12535 (2019)

Google Scholar 

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