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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Halide-Free Synthesis and Tribological Performance of Oil-Miscible Ammonium and Phosphonium-Based Ionic Liquids
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Halide-Free Synthesis and Tribological Performance of Oil-Miscible Ammonium and Phosphonium-Based Ionic Liquids

机译:油混溶性铵和Ph基离子液体的无卤化物合成及其摩擦学性能

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摘要

Due to their low vapor pressures, nonflammability, high thermal stabilities, and excellent tribological properties ionic liquids (ILs) are highly attractive lubricant base oils and additives. However, for practical applications of ILs in lubrication, two requirements are often limiting, the required miscibility with standard mineral oils (≥5 wt %) and the complete absence of corrosive halide ions in the ionic liquid. Moreover, the need for full compatibility with standard oil additives reduces the number of potential IL-based lubricant additives even further. In this contribution, an economic halide-free synthesis route to oil-miscible ionic liquids is presented, and very promising tribological properties of such ILs as base oil or additive are demonstrated. Therefore, sliding tests on bearing steel and XPS analysis of the formed surface films are shown. Corrosion test results of different bearing metals in contact with our halide-free ILs and (salt) water prove their applicability as real life lubricants. In the sustainable chemistry and engineering context, we present a halide-free design approach for ionic performance chemicals that may contribute to significant energy savings due to their enhanced lubrication properties.
机译:由于其低蒸气压,不燃性,高热稳定性和出色的摩擦学性能,离子液体(ILs)是极具吸引力的润滑剂基础油和添加剂。但是,对于ILs在润滑中的实际应用,通常要限制两个要求,即与标准矿物油(≥5 wt%)的要求的相容性以及离子液体中完全不存在腐蚀性的卤化物离子。此外,与标准机油添加剂完全兼容的需求进一步减少了潜在的基于IL的润滑剂添加剂的数量。在这一贡献中,提出了一种经济的,无卤化物的合成方法,可与油混溶的离子液体,并且证明了这种ILs(如基础油或添加剂)的摩擦学性能非常有前景。因此,显示了对轴承钢的滑动测试和对形成的表面膜的XPS分析。与我们的不含卤化物的离子液体和(盐)水接触的不同轴承金属的腐蚀测试结果证明,它们可作为现实生活中的润滑剂使用。在可持续化学和工程领域,我们为离子性能化学品提供了一种无卤设计方法,由于其增强的润滑性能,可能有助于显着节省能源。

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