用户论文:Microtribological properties of molecularly thin carboxylic acid functionalized imidazolium ionic liquid film on single-crystal silicon

  1. 类别:分析方法/应用文章
  2. 上传人:本原纳米仪器公司
  3. 上传时间:2008/9/24 17:37:37
  4. 文件大小:1919K
  5. 下载次数:55
  6. 消耗积分 : 免积分

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简介:

A series of 1-alkyl-3-ethylcarboxylic acid imidazolium chloride ([AEImi][Cl]) ionic liquids was synthesized and evaluated as a new kind of lubricant for microelectromechanical system (MEMS). In this research, novel molecular thin ionic liquid films (ILs) with various bonding percentages were prepared with different annealing temperatures and times. Film wettability was determined by measurement of contact angle and thickness with the ellipsometric method. The chemical composition,structure and morphology were characterized by the means of multi-technique X-ray photoelectron spectrometric, and atomic force microscopic analysis, respectively. The nano- and microtribological properties of the ionic liquid film were investigated. The morphologies of wear tracks of IL films were examined using a 3D non-contact profilometer. The influence of chain length on friction in nano-scale,and the effect of bonding percentage and sliding frequency on friction coefficient, carry-bearing capacity and durability inmicro-scale were studied. Data are compared to the perfluoropolyether lubricant Z Dol.The [AEImi][Cl] ionic liquid films with appropriate bonding percentage exhibited comparable loadbearing capacity and durability than Z Dol 3800 at thickness level of several nanometers. Therefore, the [AEImi][Cl] ionic liquid film shows strong potential applications involving the lubrication and protection of MEMS.

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