Chung Pil Seung, Jhon Myung S, Choi Hyoung Jin
Department of Chemical Engineering, Carnegie Mellon University, Pittsburgh, PA 15213, USA.
Department of Polymer Science and Engineering, Inha University, Incheon 402-751, Korea.
Soft Matter. 2016 Mar 21;12(11):2816-25. doi: 10.1039/c5sm02434j.
Molecularly thin perfluoropolyether (PFPE) has been used extensively as a high-performance lubricant in various applications and, more importantly, on carbon overcoats to enhance the reliability and lubrication of micro-/nanoelectro-mechanical systems, where the tribological performance caused by its molecular architecture is a critical issue, as are its physical properties and rheological characteristics. This Highlight addresses recent trends in the development of fluoro-polymeric lubricant films with regard to their tribology, rheology, and physio-chemical properties as they relate to heat-assisted magnetic recording. Nanorheology has been employed to examine the dynamic response of nonfunctional and functional PFPEs, while the viscoelastic properties of nanoscale PFPE films and the relaxation processes as a function of molecular structure and end-group functionality were analyzed experimentally; furthermore, the characteristics of binary blends were reported.
分子级超薄全氟聚醚(PFPE)已被广泛用作各种应用中的高性能润滑剂,更重要的是,它被用于碳涂层上,以提高微纳机电系统的可靠性和润滑性。在这些系统中,由其分子结构引起的摩擦学性能是一个关键问题,其物理性质和流变特性也是如此。本亮点文章阐述了含氟聚合物润滑膜在与热辅助磁记录相关的摩擦学、流变学和物理化学性质方面的最新发展趋势。纳米流变学已被用于研究非功能性和功能性PFPE的动态响应,同时通过实验分析了纳米级PFPE薄膜的粘弹性以及作为分子结构和端基官能团函数的松弛过程;此外,还报道了二元共混物的特性。