Tribological behavior of environmentally friendly borate ionic liquids with low corrosion degree
暂无分享,去创建一个
S. Yue | Zang Shuliang | X. Gao | Deng Guichun | Feiming Wang | Guowang Lu
[1] Jun Cheng,et al. Friction and wear behaviors of NiAl–Bi2O3–Ag–Cr2O3 composite coating in the thermal cycle of RT-800°C , 2021, Tribology International.
[2] T. Mamatha,et al. A review on tribological performance of lubricants with nanoparticles additives , 2020 .
[3] Jun Gao,et al. Liquid-liquid extraction of methanol from its mixtures with hexane using three imidazolium-based ionic liquids , 2019, The Journal of Chemical Thermodynamics.
[4] M. Kalin,et al. Lubrication performance of graphene-containing oil on steel and DLC-coated surfaces , 2019, Tribology International.
[5] T. Kıvak,et al. Performances of different eco-friendly nanofluid lubricants in the milling of Inconel X-750 superalloy , 2019, Tribology International.
[6] I. Warner,et al. Imidazolium-dysprosium-based magnetic NanoGUMBOS for isolation of hemoglobin. , 2019, Talanta.
[7] H. Munakata,et al. Phosphoric Acid Diethylmethylammonium Trifluoromethanesulfonate-Based Electrolytes for Nonhumidified Intermediate Temperature Fuel Cells. , 2019, ACS applied materials & interfaces.
[8] G. D. Thakre,et al. Synthesis and tribological behavior of fatty acid constituted tetramethylguanidinium (TMG) ionic liquids for a steel/steel contact. , 2018, Materials science & engineering. C, Materials for biological applications.
[9] M. Bermúdez,et al. Effects of protic ionic liquid crystal additives on the water-lubricated sliding wear and friction of sapphire against stainless steel , 2018 .
[10] Wei-min Liu,et al. Task‐Specific Oil‐Miscible Ionic Liquids Lubricate Steel/Light Metal Alloy: A Tribochemistry Study , 2018, Advanced Materials Interfaces.
[11] Wei-min Liu,et al. Biobased Green Lubricants: Physicochemical, Tribological and Toxicological Properties of Fatty Acid Ionic Liquids , 2018 .
[12] Dan Qiao,et al. Functional alkylimidazolium ionic liquids as lubricants for steel/aluminum contact: Influence of the functional groups on tribological performance , 2018 .
[13] S. Yi,et al. Tribological properties of 2 novel Mo/B–based lubricant additives in polyalphaolefin , 2017 .
[14] N. Dörr,et al. Tribochemistry and thermo-oxidative stability of halogen-free ionic liquids , 2017 .
[15] G. D. Thakre,et al. Lubrication capabilities of amino acid based ionic liquids as green bio-lubricant additives , 2017 .
[16] R. Gardas,et al. Physicochemical and tribophysical properties of trioctylalkylammonium bis(salicylato)borate (N888n-BScB) ionic liquids: effect of alkyl chain length. , 2017, Physical chemistry chemical physics : PCCP.
[17] Laigui Yu,et al. Tribological characteristic and mechanism analysis of borate ester as a lubricant additive in different base oils , 2017 .
[18] Jun Qu,et al. Ionic Liquids as Lubricant Additives: A Review. , 2017, ACS applied materials & interfaces.
[19] Yanji Zhu,et al. Fabrication of Thermally Stable Polysulfone Microcapsules Containing [EMIm][NTf2] Ionic Liquid for Enhancement of In Situ Self‐Lubrication Effect of Epoxy , 2016 .
[20] G. D. Thakre,et al. Halogen-free ammonium–organoborate ionic liquids as lubricating additives: the effect of alkyl chain lengths on the tribological performance , 2016 .
[21] O. P. Khatri,et al. Halogen-free ionic liquids: effect of chelated orthoborate anion structure on their lubrication properties , 2015 .
[22] Miaofang Chi,et al. Phosphonium-organophosphate ionic liquids as lubricant additives: effects of cation structure on physicochemical and tribological characteristics. , 2014, ACS applied materials & interfaces.
[23] Faiz Ullah Shah,et al. Boron in Tribology: From Borates to Ionic Liquids , 2013, Tribology Letters.
[24] Jun Qu,et al. A low-viscosity ionic liquid demonstrating superior lubricating performance from mixed to boundary lubrication , 2013 .
[25] Wei-min Liu,et al. Anticorrosion imidazolium ionic liquids as the additive in poly(ethylene glycol) for steel/Cu-Sn alloy contacts. , 2012, Faraday discussions.
[26] C. Versek,et al. Physicochemical properties of 1,2,3-triazolium ionic liquids , 2012 .
[27] Faiz Ullah Shah,et al. Novel halogen-free chelated orthoborate-phosphonium ionic liquids: synthesis and tribophysical properties. , 2011, Physical chemistry chemical physics : PCCP.
[28] K. Tsunashima,et al. Physical and electrochemical characterization of ionic liquids based on quaternary phosphonium cations containing a carbon–carbon double bond , 2011 .
[29] Nicholas D. Spencer,et al. Chemical Reactivity of Triphenyl Phosphorothionate (TPPT) with Iron: An ATR/FT-IR and XPS Investigation , 2011 .
[30] Yanqiu Xia,et al. Tribological Behaviors of Different Diamond-Like Carbon Coatings on Nitrided Mild Steel Lubricated With Benzotriazole-Containing Borate Esters , 2011 .
[31] Faiz Ullah Shah,et al. Synthesis, physicochemical, and tribological characterization of S-Di-n-octoxyboron-O,O'-di-n-octyldithiophosphate. , 2009, ACS applied materials & interfaces.
[32] S. Lindeman,et al. Chiral ionic liquids: synthesis, properties, and enantiomeric recognition. , 2008, The Journal of organic chemistry.
[33] V. Conte,et al. Sustainable Epoxidation of Electron‐Poor Olefins with Hydrogen Peroxide in Ionic Liquids and Recovery of the Products with Supercritical CO2 , 2003 .
[34] T. Chan,et al. Exploration of ionic liquids as soluble supports for organic synthesis. Demonstration with a Suzuki coupling reaction. , 2003, Organic letters.
[35] Li-Min Wang,et al. Ionic Liquids of Chelated Orthoborates as Model Ionic Glassformers , 2003 .
[36] Wei-min Liu,et al. Tribological behavior of Dy–sialon ceramics sliding against Si3N4 under lubrication of fluorine-containing oils , 2002 .
[37] P. Wasserscheid,et al. 1-n-Butyl-3-methylimidazolium ([bmim]) octylsulfate—an even ‘greener’ ionic liquid , 2002 .
[38] Laigui Yu,et al. Room-temperature ionic liquids: a novel versatile lubricant. , 2001, Chemical communications.
[39] P. Wasserscheid,et al. Journal of the Royal Institute of Chemistry. November 1959 , 1959 .