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无卤双(咪唑鎓)/双(铵)-二[双(水杨酸盐)硼酸盐]离子液体作为节能且环保的润滑剂添加剂

Halogen-free bis(imidazolium)/bis(ammonium)-di[bis(salicylato)borate] ionic liquids as energy-efficient and environmentally friendly lubricant additives.

作者信息

Gusain Rashi, Gupta Piyush, Saran Sandeep, Khatri Om P

机构信息

Chemical Science Division, CSIR-Indian Institute of Petroleum , Mohkampur Dehradun 248005, India.

出版信息

ACS Appl Mater Interfaces. 2014 Sep 10;6(17):15318-28. doi: 10.1021/am503811t. Epub 2014 Aug 20.

Abstract

Bis(imidazolium)- and bis(ammonium)-di[bis(salicylato)borate] ionic liquids with variable alkyl chain and cyclic ring structures, were synthesized and then evaluated them as potential lubricant additives. The copper strip test results revealed noncorrosive properties of these ionic liquids. Introduction of halogen content in bis(imidazolium) ionic liquid by replacement of bis(salicylato)borate (BScB) anion with hexafluorophosphate (PF6(-)), severely corroded the copper strip. Thermogravimetric results showed that bis(imidazolium) ionic liquids exhibited higher thermal stability than bis(ammonium) ionic liquids owing to compact structure provided by imidazolium rings, higher intermolecular interactions, smaller free volume and low steric hindrance. The lubrication properties of these ionic liquids as additives to synthetic lubricant poly(ethylene) glycol (PEG 200) were evaluated for steel balls. Results showed that bis(ammonium)- and bis(imidazolium)-(BScB)2 ionic liquids as additives significantly reduced both friction coefficient and wear of PEG 200. The structure of cations, particularly the variation in substituted alkyl chain length monitored the degree of reduction in friction and wear. The excellent lubrication properties were attributed to the formation of adsorbed tribo-thin film and tribochemical product during the tribo-contact. Being halogen-, phosphorus-, and sulfur-free, these ionic liquids (a) protects contact surfaces from tribo-corrosive events, (b) reduces the friction and wear, and (c) keep environment green and clean.

摘要

合成了具有可变烷基链和环结构的双(咪唑鎓)和双(铵)双[双(水杨酸盐)硼酸盐]离子液体,然后将它们作为潜在的润滑剂添加剂进行评估。铜片试验结果表明这些离子液体具有无腐蚀性。通过用六氟磷酸盐(PF6(-))取代双(水杨酸盐)硼酸盐(BScB)阴离子在双(咪唑鎓)离子液体中引入卤素含量,严重腐蚀了铜片。热重分析结果表明,由于咪唑环提供的紧凑结构、更高的分子间相互作用、更小的自由体积和低空间位阻,双(咪唑鎓)离子液体比双(铵)离子液体表现出更高的热稳定性。评估了这些离子液体作为合成润滑剂聚(乙二醇)(PEG 200)添加剂对钢球的润滑性能。结果表明,双(铵)和双(咪唑鎓)-(BScB)2离子液体作为添加剂显著降低了PEG 200的摩擦系数和磨损。阳离子的结构,特别是取代烷基链长度的变化监测了摩擦和磨损的降低程度。优异的润滑性能归因于在摩擦接触过程中形成的吸附摩擦薄膜和摩擦化学反应产物。这些离子液体不含卤素、磷和硫,(a)保护接触表面免受摩擦腐蚀事件,(b)降低摩擦和磨损,(c)保持环境绿色清洁。

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