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氧化等离子体聚合有机硅氧烷的光学性质及其与机械和化学参数的相关性。

Optical Properties of Oxidized Plasma-Polymerized Organosilicones and Their Correlation with Mechanical and Chemical Parameters.

作者信息

Cechalova Bozena, Branecky Martin, Klapetek Petr, Cech Vladimir

机构信息

CEITEC, Brno University of Technology, Purkynova 123, 612 00 Brno, Czech Republic.

Institute of Materials Chemistry, Faculty of Chemistry, Brno University of Technology, Purkynova 118, 612 00 Brno, Czech Republic.

出版信息

Materials (Basel). 2019 Feb 12;12(3):539. doi: 10.3390/ma12030539.

Abstract

Pure tetravinylsilane and its oxygen mixture were used to deposit oxidized plasma polymer films at various effective power (0.1⁻10 W) and various oxygen fractions (0⁻0.71) using RF pulsed plasma. The optical properties (refractive index, extinction coefficient, band gap) of the deposited films were investigated by spectroscopic ellipsometry (230⁻830 nm) using an optical model and Tauc‒Lorentz parametrization. Analyses of chemical and mechanical properties of films allowed for the interpretation of changes in optical properties with deposition conditions. The refractive index was revealed to increase with enhanced effective power due to the increased crosslinking of the plasma polymer network but decreased when increasing the oxygen fraction due to the decrease of polymer crosslinking as the number of carbon bonds in the plasma polymer network was eliminated. A very strong positive correlation was found between the Young's modulus and the refractive index for oxidized plasma polymer films. The optical properties of films correlated with their chemical properties for the specific deposition conditions used in this study. The band gap (1.9⁻2.9 eV) was assumed to be widened due to the increased concentration of vinyl groups in oxidized plasma polymer films.

摘要

使用射频脉冲等离子体,在各种有效功率(0.1⁻10 W)和各种氧气分数(0⁻0.71)下,用纯四乙烯基硅烷及其与氧气的混合物沉积氧化等离子体聚合物薄膜。使用光学模型和Tauc-Lorentz参数化,通过光谱椭偏仪(230⁻830 nm)研究沉积薄膜的光学性质(折射率、消光系数、带隙)。对薄膜的化学和机械性能进行分析,以便解释光学性质随沉积条件的变化。结果表明,由于等离子体聚合物网络交联增加,折射率随有效功率的提高而增加,但随着氧气分数的增加而降低,这是因为随着等离子体聚合物网络中碳键数量的减少,聚合物交联减少。对于氧化等离子体聚合物薄膜,发现杨氏模量与折射率之间存在非常强的正相关。在本研究中使用的特定沉积条件下,薄膜的光学性质与其化学性质相关。由于氧化等离子体聚合物薄膜中乙烯基浓度的增加,带隙(1.9⁻2.9 eV)被认为会变宽。

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