Chain-end-mediated interfacial design of transparent and hydrophobic PI/SiO2 films
Liukui Zhu, Z. Liu, Yinggang Liu, Liang Song, Ping Ping Zheng, Wei Chen, Lianxia Ma
Xinjiang Agricultural University Xinjiang Institute of Engineering Xinjiang University Xinjiang Uygur Autonomous Region Institute of Metrology and Measurement
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Highly transparent and hydrophobic polyimide (PI) films are attractive for advanced optoelectronic and flexible electronic devices, but their performance is often limited by weak organic–inorganic interactions and nanoparticle aggregation. In this work, a chain-end-mediated interfacial design was developed by combining IPTS-mediated PI/SiO 2 coupling with subsequent PFOTES surface fluorination. This sequential interface/surface regulation provided a practical route to jointly improve transparency, hydrophobicity, and thermo-mechanical performance in PI nanocomposite films. The optimized PI-Z2F film exhibited a transmittance at 500 nm (T₅₀₀) of 90.6%, a water contact angle of 114°, a glass-transition temperature (Tg) of 326 °C, and a tensile strength of 165 MPa. These results indicate that coordinated interfacial construction and surface fluorination provide an effective route to balancing hydrophobicity, optical transparency, and thermo-mechanical performance in PI nanocomposite films.
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材料 / 化学Surface Modification and Superhydrophobicity
Polymer Nanocomposites and Properties · Mesoporous Materials and Catalysis
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