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合成和优化含 [BMIm]PF 离子液体润滑剂的聚氨酯微胶囊。

Synthesis and optimization of polyurethane microcapsules containing [BMIm]PF ionic liquid lubricant.

机构信息

Provincial Key Laboratory of Oil & Gas Chemical Technology, School of Chemistry & Chemical Engineering, Northeast Petroleum University, Daqing 163318, PR China.

Provincial Key Laboratory of Oil & Gas Chemical Technology, School of Chemistry & Chemical Engineering, Northeast Petroleum University, Daqing 163318, PR China; School of Chemical Engineering and Technology, and State Key Laboratory of Chemical Engineering, Tianjin University. Tianjin 300072, PR China.

出版信息

J Colloid Interface Sci. 2019 Jan 15;534:469-479. doi: 10.1016/j.jcis.2018.09.059. Epub 2018 Sep 18.

Abstract

Polyurethane (PU) microcapsules containing [BMIm]PF as a lubricant have been fabricated by interfacial polymerization. The stabilizing effect of 10 kinds of emulsifiers towards [BMIm]PF ionic liquid have been delineated. A Pickering emulsion stabilized by lignin showed the best emulsification effect on highly viscous [BMIm]PF. The types and reactivities of monomers have an important influence on the formation of microcapsules. Three kinds of isocyanate (IPDI, MDI, TDI) were reacted with diamines or diols to prepare the PU microcapsules in this work. The optiaml [BMIm]PF@PU microcapsules were obtained when using IPDI and TETA as monomers, under conditions of 5,000 rpm emulsifying rate, 0.5 wt% concentration of lignin Pickering emulsion, and a 3:1 mass ratio of [BMIm]PF/IPDI. The synthesized microcapsules have a regular and compact spherical structure, smooth outer, and inner surfaces with a mean diameter of 43 ± 15 µm, and a thickness of 3.8 µm. The core content of [BMIm]PF@PU microcapsules was determined as >70%, and the initial decomposition temperature was 300 °C. The [BMIm]PF ionic liquid shown excellent lubricating property, ultralow friction coefficient (decreased by 72.7%) and wear rate (decreased by 160 times) were obtained by embedding 30 wt% microcapsules into epoxy compared with pure epoxy.

摘要

通过界面聚合法制备了含有 [BMIm]PF 作为润滑剂的聚氨酯 (PU) 微胶囊。描绘了 10 种乳化剂对 [BMIm]PF 离子液体的稳定作用。木质素稳定的 Pickering 乳液对高粘性 [BMIm]PF 表现出最佳的乳化效果。单体的类型和反应性对微胶囊的形成有重要影响。本工作中使用三种异氰酸酯 (IPDI、MDI、TDI) 与二胺或二醇反应制备 PU 微胶囊。在乳化速度为 5,000 rpm、木质素 Pickering 乳液浓度为 0.5 wt%、[BMIm]PF/IPDI 质量比为 3:1 的条件下,使用 IPDI 和 TETA 作为单体可以得到最佳的 [BMIm]PF@PU 微胶囊。合成的微胶囊具有规则且致密的球形结构,外表面光滑,内表面光滑,平均直径为 43±15µm,厚度为 3.8µm。[BMIm]PF@PU 微胶囊的芯含量>70%,初始分解温度为 300°C。将 30 wt%微胶囊嵌入环氧树脂中与纯环氧树脂相比,[BMIm]PF 离子液体表现出优异的润滑性能,摩擦系数降低了 72.7%,磨损率降低了 160 倍。

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