...
首页> 外文期刊>Surface & Coatings Technology >Adhesion enhancement of polyethylene modified by capacitively coupled radio frequency plasma polymerization of ethanol
【24h】

Adhesion enhancement of polyethylene modified by capacitively coupled radio frequency plasma polymerization of ethanol

机译:乙醇电容耦合射频等离子体聚合改性聚乙烯的粘合增强

获取原文
获取原文并翻译 | 示例
           

摘要

The plasma polymerization of ethanol monomer was carried out under the capacitively coupled radio frequency plasma (CCP) of a radio frequency (RF) power of 100W at different power to flow rate (P/F) ratios of 0.7,1.0 and 2.7 W/sccm. The influence of the P/F ratios on deposition rate, chemical composition, surface morphology, and wettability were studied for the plasma polymer films of ethanol monomer on the pristine low density polyethylene (LDPE) surfaces and the surfaces under the oxygen CCP pretreatment of a RF power of 200 W for an exposure time of 1 and 5 min. The deposition rate of the plasma polymer films gradually increased with the P/F ratios. The retention of the hydroxyl groups decreased and the contents of the ketone, carboxylic acid, ester, ether, and epoxide groups increased in the plasma polymer films with the increased P/F ratios. The conformal deposition of the plasma polymer films to the LDPE surfaces was found on the pristine surfaces with the sub-micrometer asperities and the surfaces under oxygen CCP pretreatment with the nanotextures. The dynamic contact angle of the plasma polymer films increased with the P/F ratios on the LDPE surfaces with the sub-micrometer asperities. The plasma polymer films showed the decrease of the dynamic contact angle with the P/F ratios on the surfaces with the nanonodules and the nanopillar array. The significant improvement of the adhesion was achieved for LDPE samples with the nanonodules and the nanopillar array under the surface modification of the oxygen CCP pretreatment followed by the deposition of the plasma polymer films of ethanol monomer due to the cooperation adhesion mechanisms of the mechanical interlocking and the chemical bonding. (C) 2014 Elsevier B.V. All rights reserved.
机译:乙醇单体的等离子体聚合是在电容(RF)功率为100W的电容耦合射频等离子体(CCP)下以0.7、1.0和2.7 W / sccm的不同功率/流量比(P / F)进行的。研究了P / F比对原始低密度聚乙烯(LDPE)表面和氧气CCP预处理的乙醇单体的血浆聚合物膜的沉积速率,化学组成,表面形态和润湿性的影响。 200 W的RF功率,曝光时间为1分钟和5分钟。等离子体聚合物膜的沉积速率随着P / F比逐渐增加。随着P / F比的增加,等离子聚合物膜中羟基的保留降低,并且酮,羧酸,酯,醚和环氧基的含量增加。在具有亚微米级粗糙的原始表面上以及在用纳米纹理进行氧CCP预处理的表面上发现等离子聚合物膜在LDPE表面上的保形沉积。等离子体聚合物膜的动态接触角随LDPE表面上的P / F比和亚微米级凹凸而增加。等离子体聚合物膜在具有纳米结节和纳米柱阵列的表面上显示出动态接触角随P / F比的减小。对于具有纳米节和纳米柱阵列的LDPE样品,在氧气CCP预处理的表面改性下,由于机械互锁和化学键合的协同粘附机理而沉积了乙醇单体的等离子体聚合物膜,从而实现了粘附力的显着改善。化学键。 (C)2014 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号