纳米摩擦中极性有机分子超薄膜的结构,对称性及能量机理

更新时间:2023-05-12 21:30:58 阅读: 评论:0

testee采用分子动力学方法,模拟了由脂肪酸 CnH2n+1COOH 和 C17H35COOH (n =12,13,14,15,16,17)按1:1比例组成的7种混合单层 Langmuir-Blodgett (LB)膜和由 C16H33COOH 分子组成的单层膜的摩擦性质.结果显示:1)随着混合单层膜内的不同分子链长差的减小,其剪切压随之减小,摩擦力主要来自单层膜间的库伦作用;2)混合膜内的两种不同分子的尾基排列对其摩擦性能影响较大,当混合 LB 膜中所有分子尾基全同排列时剪切压较小.当分子链长差为1个 C-C 键长时,分子尾基排列对膜的摩擦性质影响较大.3)同种分子尾基全同排列组成的单层膜,当上下两单层膜的尾基呈镜面对称时,其剪切压随着分子链长的增加而减小,摩擦力主要来自膜间的库伦作用;当上下两单层膜的尾基呈中心对称时,膜间摩擦力主要来自膜间的范德华(VDW)作用.初级日语wenjie bosco
妩媚英文Abstract:舞蹈教练培训班 The molecular dynamics simulation has been ud to study the tribological properties of the ven kinds mixed Langmuir-Blodgett (LB) monolayers, which compod of the fatty acids CnH2n+1COOH and C17H31COOH (n = 12,13,14,15,16,17) by the ratio of 1:1, and the monolayers compoesd by C16H33COOH. The results showed that: (1) the shear pressure of mixed LB monolayers decread as the chain-length of molecules Cn incread. The friction force main come from the coulombic interaction between the monola
九年级上册英语课文
a little inspirationyers. (2) the arrangement of the two kinds of tails of the molocules influence the friction character. The shear pressure is smaller when all the tails are isotactic-arrangement than anisotactic-arrangemnet, espacilly when the differrence of the chain-length is one C-C bondlength. (3) The shear pressure decread as the chainlength decread, and the friction froce main come from the coulombic interaction, when tails of the up and down isotactic monolayers which are compod of one kind molecule are mirror symmetry, or the friction froce main come from the van der wasls (VDW) interaction when tails are central symmtry. 
front page>存储容量

本文发布于:2023-05-12 21:30:58,感谢您对本站的认可!

本文链接:https://www.wtabcd.cn/fanwen/fan/78/604675.html

版权声明:本站内容均来自互联网,仅供演示用,请勿用于商业和其他非法用途。如果侵犯了您的权益请与我们联系,我们将在24小时内删除。

标签:分子   排列   单层   摩擦   减小   组成   链长   剪切
相关文章
留言与评论(共有 0 条评论)
   
验证码:
推荐文章
排行榜
Copyright ©2019-2022 Comsenz Inc.Powered by © 专利检索| 网站地图