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首页> 外文期刊>ACS applied materials & interfaces >Ultralow Friction Self-Lubricating Nanocomposites with Mesoporous Metal-Organic Frameworks as Smart Nanocontainers for Lubricants
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Ultralow Friction Self-Lubricating Nanocomposites with Mesoporous Metal-Organic Frameworks as Smart Nanocontainers for Lubricants

机译:Ultralow摩擦自润滑纳米复合材料与介孔金属 - 有机框架,作为润滑剂的智能纳米容器

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Smart nanocontainers with stimuli-responsive property can be used to fabricate a new kind of self-lubricating nanocomposite, while the practical potential of the metal organic frameworks (MOFs) as nanocontainers for lubricants has not been realized. In this work, mesoporous Cu-BTC MOFs storing oleylamine nanocomposites were explored from synthesis and microstructure to self-lubricating characterization. The stress stimuli-responsiveness behavior of the Cu-BTC storing oleylamine (Cu-BTCO) for lubrication has been investigated by subjecting it to macroscopic ball-on-disc friction tests. The steady-state coefficients of friction (COFs) of the Cu-BTC nanocomposites without lubricants were ca. 0.5. In contrast, after oleylamine as the lubricant was incorporated into the Cu-BTC container in the nanocomposite, ultralow friction (COF, ca. 0.03) was achieved. It has been demonstrated that the improved lubricating performance was associated with the lubricating film which was in situ produced by the chemical reaction between the oleylamine released from the nanocontainer and the friction pairs. Therefore, the nanocomposite with smart Cu-BTC container holds the promise of realizing extraordinary self-lubricating properties under stress stimuli.
机译:具有刺激响应性的智能纳米容器可用于制造一种新型的自润滑纳米复合材料,而金属有机骨架(MOF)的实际潜力尚未实现润滑剂的纳米容器。在这项工作中,从合成和微观结构探索了储存Oxylamine纳米复合材料的中孔Cu-BTC MOF与自润滑表征。通过对宏观球型摩擦试验进行宏观滚珠丝摩擦试验,研究了Cu-BTC储存Oxylamine(Cu-BTCO)对润滑的应激刺激性能。无润滑剂的Cu-BTC纳米复合材料的稳态系数(COF)是Ca。 0.5。相反,在将润滑剂掺入纳米复合材料中的润滑剂中后,实现了纳米复合材料中的Cu-BTC容器中,实现了超级摩擦(COF,CA.03)。已经证明,改善的润滑性能与润滑膜与原位原位的润滑膜相关联,该润滑膜由从纳米容器和摩擦对释放的油胺之间的化学反应产生。因此,具有智能Cu-BTC容器的纳米复合材料具有在应力刺激下实现非凡的自润滑性质的承诺。

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