Retraction: Research Progress on Novel Water-Soluble Lubricant Additives
DOI:
https://doi.org/10.63313/AERpc.9056Keywords:
Water-soluble lubricant additives, Environmental protection, Lubrication performance, Application fields, Development trendsAbstract
At request of the authors, this article has been retracted by Erytis Publishing Limited in light of clear evidence that the results and conclusions are no longer valid.
We thank the authors for notifying us so that the publication record can be amended accordingly.
Retraction published: November 10, 2025.
References
[1] Ma L ,Zhang C ,Liu S .Progress in experimental study of aqueo us lubrication[J].Chinese Science Bulletin,2012,57(17):2062-2069.
[2] Huang W, Yang S, Hua K, Zhang X, Liu X. Enhanced lubricating performance by combining proton-type ionic liquids and water-soluble Cu nanoparticles as water-based lubrication additives at the steelsteel interface. Colloids and Surfaces A: Physicochemical and Engi-neering Aspects. 2024;703:135274-135274.
[3] Liu Q ,Hou X ,Li N .Ionic liquids from renewable biomaterials: synthesis, characterization and application in the pretreatment of biomass[J].Green chemistry,2012,14(2):304-307.
[4] Peng Y, Hu Y, Wang H. Tribological behaviors of surfactant-fun ctionalized carbon nano-tubes as lubricant additive in water[J]. Tr ibology Letters, 2007, 25: 247-253.
[5] Dong R, Yu Q, Bai Y, Wu Y, Ma Z, Zhang J, Zhang C, Yu B, Zhou F, Liu W, Cai M. Towards su-perior lubricity and anticorrosion performances of proton-type ionic liquids additives for water-based lubricating fluids. Chemical Engineering Journal. 2020;383:123201-123201.
[6] Yu B, Zou K, Wang R, Chen Q, Liu X, Zhang J, Lv W, Yu Q, Cai M, Zhou F. A novel polyionic liquid with lubricity and viscosity-increasing dual functionalities as the additive in aqueous lubrication system. Friction. 2023;12:698-710.
[7] Hao Y, Zhang M, Liu H, Zhang E, Chen Y, Li W, Cheng S. Tribological performance of fatty acid ammonium ionic liquids as anti-wear additives in water-based fluids. Tribol Lett. 2024;194:109565.
[8] Shuyan Y ,Honghui Z ,Wei X , et al.Extracellular vesicle-packaged miR-181c-5p from epi-thelial ovarian cancer cells promotes M2 polarization of tumor-associated macrophages via the KAT2B/HOXA10 axis.[J].The journal of gene medicine,2022,24(10):e3446-e3446..
[9] Li D, Zuo X, Yu H, Zhou F, Zhang X. Synergistic Lubrication Achieved by Proton-Ionic Liq-uids and MoS2 as High-Performance Water-Based Lubricant Additives. Langmuir: the ACS journal of surfaces and colloids. 2025;41:5534–5545.
[10] Zhao G, Li X, Ho K R. Development of deep eutectic solvents applied in extraction and sep-aration. Journal of separation science. 2016;39:3505-20.
[11] Rui Z ,Xiaozhi Z ,Huijie X , et al. Fabrication of Zwitterionic Polymer-Functionalized On-ion-like Carbon Nanoparticles as Aque ous Lubricant Additives.[J].Langmuir : the ACS journal of surfa ces and colloids,2023,39(43):
[12] Najiha S M ,Rahman M M .Experimental investigation of flank wear in end milling of alu-minum alloy with water-based TiO2 nanofluid lubricant in minimum quantity lubrication technique[J]. The International Journal of Advanced Manufacturing Technology, 2016,86(9-12):2527-2537.
[13] Lizong Liu. Research Status and Development Trends of Water-Soluble Lubrication Addi-tives [J]. The International Journal of Advanced Manufacturing Technology, 2011,39(02):122-124+102.
[14] Wang W, Lin N, Ma Z, Wang M, Wang L, Zhang L, Wang R, Zhou F, Liu W. Bottle-brush poly-urethane as water-based lubricant additive for hydrophobic interfaces. Tribol Lett. 2025;201:110223-110223.
[15] Wei Y, Chen W, Fu X, Cao L, Gao S, Wang Y. Ultralow friction of copper by a green wa-ter-based lubricant containing phytic acid. Journal of Molecular Liquids. 2021;338:116704
[16] Wei W ,Penghui G ,Tingli H , et al. Tribological performances of BP/TiOsub2/sub nano-composites as water-based lubrication ad ditives for titanium alloy plate cold roll-ing[J].Wear,2022,(prepubli sh):204278-.
[17] Xia Y, Liu H, Yang B, Wang C, Han Y, Liu D. The mechanisms and applications of friction energy dissipation. Friction. 2022;11:839-864.
Downloads
Published
Issue
Section
License
Copyright (c) 2025 by author(s) and Erytis Publishing Limited.

This work is licensed under a Creative Commons Attribution 4.0 International License.








