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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >The growth and chemical structure of thin photonic films formed from plasma copolymerization: I. Effect of monomer feed ratio
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The growth and chemical structure of thin photonic films formed from plasma copolymerization: I. Effect of monomer feed ratio

机译:等离子体共聚形成的光子薄膜的生长和化学结构:I.单体进料比的影响

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Fabrication methodologies of thin, optical quality polymer films are important given the current interest in photonics. Plasma enhanced chemical vapor deposition (PECVD) has been previously investigated as a useful technique to polymerize various organic precursors. In the work presented here, we have studied the simultaneous plasma copolymerization of two monomers, benzene and octafluorocyclobutane (OFCB), and explored the structure of the final films using FTIR and XPS in order to tailor the resulting optical properties. There is a complex relationship between the film structures and the input parameters including monomer feed ratio and feed location. In plasma copolymerization, the gas phase initiation of the monomers is strongly dependent upon the bond dissociation energy of their structural moieties. The change of the monomer feed ratio leads to different trends with respect to various CFn(n = 1-3) structural units, resulting in differences in the final film structure. Defluorination of the copolymer films was significantly enhanced by the addition of a small amount of benzene. The main fluorine-containing structural unit was the CF moiety for the copolymerized film, which is different from both homopolymerized OFCB and conventional PTFE polymers where the main fluorine-containing structural unit is CF2. Retention of conjugation and aromaticity in the resultant films was also observed. (C) 2004 Elsevier Ltd. All rights reserved.
机译:鉴于目前对光子学的兴趣,薄的,光学质量的聚合物薄膜的制造方法很重要。先前已经研究了等离子体增强化学气相沉积(PECVD)作为聚合各种有机前体的有用技术。在此处介绍的工作中,我们研究了苯和八氟环丁烷这两种单体的同时等离子体共聚,并使用FTIR和XPS探索了最终膜的结构,以调整最终的光学性能。薄膜结构与输入参数(包括单体进料比和进料位置)之间存在复杂的关系。在等离子体共聚中,单体的气相引发强烈依赖于其结构部分的键解离能。单体进料比的变化导致关于各种CFn(n = 1-3)结构单元的趋势不同,从而导致最终薄膜结构的差异。通过添加少量的苯,共聚物薄膜的脱氟作用显着增强。含氟的主要结构单元是共聚膜的CF部分,这与均聚的OFCB和常规的PTFE聚合物(含氟的主要结构单元为CF2)不同。还观察到在所得膜中保留了共轭和芳香性。 (C)2004 Elsevier Ltd.保留所有权利。

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