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首页> 外文期刊>ACS applied materials & interfaces >Synthesis, Physicochemical, and Tribological Characterization of S-Di-n-octoxyboron-O,O'-di-n-octyldithiophosphate
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Synthesis, Physicochemical, and Tribological Characterization of S-Di-n-octoxyboron-O,O'-di-n-octyldithiophosphate

机译:S-二正辛氧基硼-O,O'-二正辛基二硫代磷酸酯的合成,物化和摩擦学表征

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Dialkyldithiophosphates (DTPs) of zinc(II), copper(II), and other metals have been extensively used as multifunctional additives in lubricants to control friction and reduce wear in mechanical systems. Among these DTP compounds, zinc dialkyldithiophosphates (ZnDTPs) are the most common additives extensively used for more than 60 years. These additives form a protective film on steel surfaces and, thus, control friction and reduce wear. However, ZnDTPs contain zinc and large amounts of phosphorus and sulfur, which impair the environment, both directly and indirectly, by adversely affecting the performance of catalytic converters of various automobiles. For this reason, environmental legislation imposes limitations on concentrations of phosphorus, sulfur, and zinc in the lubricants. In this work, we report on zinc-free S-di-n-octoxyboron-O,O'-di-n-octyldithiophosphate (DOB-DTP) lubricant additive with amount of phosphorus and sulfur reduced by half in a molecule as compared with ZnDTPs. DOB-DTP was synthesized by a reaction in two steps under inert nitrogen atmosphere. The final product, a viscous liquid, was characterized by the elemental analysis, FT-IR. multinuclear ~1H, ~(13)C, ~(31)P, and ~(11)B NMR spectroscopy and thermal analyses. Tribological performance of a mineral oil with this new additive was evaluated in comparison with O,O'-di-n-butyl-dithiophosphato-zinc(II) (ZnDTP) using a four-ball tribometer. The surface morphology and the elemental composition of the tribofilms were characterized using scanning electron microscopy with energy dispersive X-ray spectroscopy (SEM/EDS). The results show that DOB-DTP has a considerably better antiwear performance and higher stability of the coefficient of friction with time as compared with ZnDTP, Both phosphorus and sulfur were detected by the EDS on the worn steel surfaces at all concentrations of additives in the base oil.
机译:锌(II),铜(II)和其他金属的二烷基二硫代磷酸酯(DTP)已广泛用作润滑剂中的多功能添加剂,以控制摩擦并减少机械系统的磨损。在这些DTP化合物中,二烷基二硫代磷酸锌(ZnDTP)是60多年来广泛使用的最常见添加剂。这些添加剂在钢表面上形成保护膜,从而控制摩擦并减少磨损。然而,ZnDTP含有锌以及大量的磷和硫,这通过不利地影响各种汽车的催化转化器的性能而直接和间接地损害环境。因此,环境法规对润滑剂中磷,硫和锌的浓度施加了限制。在这项工作中,我们报告了一种无锌S-二-正辛氧基硼-O,O'-二正辛基二硫代磷酸酯(DOB-DTP)润滑剂添加剂,其分子中的磷和硫的量与ZnDTPs。通过在惰性氮气气氛下分两步反应合成DOB-DTP。最终产品为粘稠液体,通过元素分析FT-IR进行表征。多核〜1H,〜(13)C,〜(31)P和〜(11)B NMR光谱和热分析。使用四球摩擦计,与O,O'-二正丁基-二硫代磷酸锌(II)(ZnDTP)相比,评估了使用这种新添加剂的矿物油的摩擦学性能。摩擦膜的表面形态和元素组成使用扫描电子显微镜和能量色散X射线光谱(SEM / EDS)进行表征。结果表明,与ZnDTP相比,DOB-DTP具有明显更好的抗磨性能和较高的摩擦系数随时间稳定性。在基体中各种添加剂浓度下,EDS都能在磨损的钢表面上同时检测到磷和硫油。

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