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Challenges and developments of self-assembled monolayers and polymer brushes as a green lubrication solution for tribological applications

机译:自组装单层膜和聚合物刷的挑战和发展,作为摩擦学应用的绿色润滑解决方案

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摘要

Self-assembled monolayers (SAMs), after originally being investigated due to their functions in changing surface wettability, have been significantly developed over the years. Many types of SAMs have been developed on a variety of substrates. However their formation mechanism, rate and quality are found to be influenced by many factors. A range of SAMs including single- and multi- component are included in this review with focus on the nano and macro tribological properties. More recently, surface initiated polymer brushes, i.e. macromolecular assemblies attached to a substrate, have emerged to be an alternative and promising method for surface modification. The ability to tether these macromolecules to tribological contacts is key to their resistance to shear under loaded contacts. This review also covers atom transfer radical polymerisation (ATRP) and the role of this technique in developing new lubrication solutions. Particular care has been taken to include the development of lubrication solutions for silicon nitride due to the importance of this material as an engineering ceramic. This paper reviews the state-of-the-art development of SAMs and polymer brushes especially the potential opportunities and challenges in applying them in tribological contacts as a lubrication solution
机译:自组装单分子膜(SAMs)由于其在改变表面润湿性方面的功能而最初受到研究后,多年来已经得到了显着发展。已经在各种基板上开发了许多类型的SAM。然而,发现它们的形成机理,速率和质量受许多因素影响。这篇综述中包括了一系列包括单组分和多组分的SAM,重点是纳米和宏观摩擦学特性。最近,已经出现了表面引发的聚合物刷,即附着在基材上的大分子组件,已经成为表面改性的替代方法和有希望的方法。将这些大分子与摩擦学接触束缚的能力是其在负载接触下抗剪切能力的关键。这篇综述还涵盖了原子转移自由基聚合(ATRP)以及该技术在开发新润滑解决方案中的作用。由于这种材料作为工程陶瓷的重要性,因此特别要注意开发氮化硅的润滑解决方案。本文回顾了SAM和聚合物刷的最新发展,特别是将它们应用于摩擦接触作为润滑解决方案的潜在机遇和挑战

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