Effects of Ether Linkage and Benzene Ring Substitution Structures on Thermal and Optical Properties of 6FDA/3DDS-Based Transparent Polyimide Films

IF 2.2 4区 工程技术 Q1 MATERIALS SCIENCE, TEXTILES Fibers and Polymers Pub Date : 2024-12-09 DOI:10.1007/s12221-024-00793-0
Hansol Ma, Min Ho Jee, Kyung-Eun Kim, Doo Hyun Baik
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Abstract

This study reports the thermal and optical properties of a transparent polyimide (PI) film system incorporating trifluoromethyl (CF3-), ether (-O-), and sulfone (-SO2–) functionalities into the polymer backbone by co-polymerizing 4,4'-(hexafluoroisopropylidene) diphthalic anhydride (6FDA) and bis(3-aminophenyl) sulfone (3DDS)-based transparent PI with additional diamine monomers such as bis[4-(4-aminophenoxy)phenyl] sulfone (p-BAPS) and bis[4-(3-aminophenoxy)phenyl] sulfone (m-BAPS). Our findings clearly demonstrate that the introduction of p-BAPS and m-BAPS monomers into the 6FDA/3DDS-based PI system significantly influences the thermal and optical properties of the resulting PI films. Specifically, the glass transition temperature (Tg) of the 6FDA/3DDS/p-BAPS-based PI film increased by approximately 10 °C compared to the pristine 6FDA/3DDS-based PI film, while the yellowness index (YI) decreased from 12.75 to 3.76. On the other hand, the Tg of the 6FDA/3DDS/m-BAPS-based PI film decreased by about 5 °C compared to the pure 6FDA/3DDS-based PI film, but nevertheless, the YI value decreased from 12.75 to − 1.85 and the optical properties were improved compared to the 6FDA/3DDS-based PI film. Based on these observations, it was reasonably concluded that the simultaneous introduction of flexible ether bonds and rigid, linear benzene rings would not only minimize the thermal degradation of the final PI film due to the introduction of comonomers but also improve its thermal and optical properties simultaneously. Thus, we believed that this study will provide valuable insights on the simultaneous enhancement of the thermal and optical properties of PI system through the combination of various monomers, such as introducing flexibility into the polymer backbone and reinforcing the rigid ring structure and substituent configurations.

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醚键和苯环取代结构对6FDA/ 3dds透明聚酰亚胺薄膜热光学性能的影响
本研究通过4,4′-(六氟异丙基)二苯酐(6FDA)和双(3-氨基苯基)砜(3ds)基透明聚酰亚胺(PI)薄膜体系与双[4-(4-氨基苯基)苯基]砜(p-BAPS)和双[4-(3-氨基苯基)苯基]砜(m-BAPS)等二胺单体共聚合,将三氟甲基(CF3-)、醚(- o-)和砜(- so2 -)官能团纳入聚合物骨架,研究了透明聚酰亚胺(PI)薄膜体系的热光学性能。我们的研究结果清楚地表明,将p-BAPS和m-BAPS单体引入到基于6FDA/ 3dds的PI体系中,会显著影响所得到的PI薄膜的热学和光学性能。具体来说,6FDA/ 3ds /p- baps基PI膜的玻璃化转变温度(Tg)比原始6FDA/ 3ds基PI膜提高了约10℃,而黄度指数(YI)从12.75下降到3.76。另一方面,6FDA/ 3ds /m-BAPS-based PI薄膜的Tg比纯6FDA/ 3ds -based PI薄膜降低了约5°C,但YI值从12.75下降到- 1.85,光学性能比6FDA/ 3ds -based PI薄膜有所改善。基于这些观察,我们可以合理地得出结论,同时引入柔性醚键和刚性线性苯环,不仅可以最大限度地减少由于引入共聚单体而导致的最终PI膜的热降解,而且可以同时改善其热性能和光学性能。因此,我们相信这项研究将为通过各种单体的组合同时增强PI体系的热性能和光学性能提供有价值的见解,例如在聚合物主链中引入柔韧性,增强刚性环结构和取代基构型。
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来源期刊
Fibers and Polymers
Fibers and Polymers 工程技术-材料科学:纺织
CiteScore
3.90
自引率
8.00%
发文量
267
审稿时长
3.9 months
期刊介绍: -Chemistry of Fiber Materials, Polymer Reactions and Synthesis- Physical Properties of Fibers, Polymer Blends and Composites- Fiber Spinning and Textile Processing, Polymer Physics, Morphology- Colorants and Dyeing, Polymer Analysis and Characterization- Chemical Aftertreatment of Textiles, Polymer Processing and Rheology- Textile and Apparel Science, Functional Polymers
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