Preparation of Transparent and Scratch-Resistant Organic–Inorganic Hybrid Coatings: Role and Mechanism of Silane-Modified Nano-SiO2

材料科学 透射率 刮擦 色散(光学) 复合数 复合材料 丙烯酸酯 抗冲击性 聚氨酯 硬度 反射率 表面改性 压痕硬度 灵活性(工程) 水解 联轴节(管道) 乳状液 弹性体 制作 硅烷 有机硅 消泡剂 灵活的显示器 化学工程 可见光谱 溶胶凝胶
作者
Shilu Wang,Siwei Hu,Hanhui Kang,Yanfang Li,Chunxiao Yin,Yuteng Ling,Haolan Xiao,Lili Wu
出处
期刊:Polymers [Multidisciplinary Digital Publishing Institute]
卷期号:18 (6): 674-674
标识
DOI:10.3390/polym18060674
摘要

Optical plastics possess excellent optical and mechanical properties but are limited by poor surface hardness and scratch resistance. Herein, UV-curable organic-inorganic hybrid coatings were developed to enhance scratch resistance while maintaining high optical transparency. Nano-silica sols were prepared via tetraethoxysilane (TEOS) hydrolysis and surface modified with silane coupling agents (KH-560, KH-570, and KH-550) to improve their dispersion and interfacial reactivity in a polyurethane acrylate (PUA) matrix. The modified nano-silica was incorporated into a UV-curable PUA system to fabricate transparent composite coatings. The influences of nano-silica type and loading on hardness, flexibility, wettability, scratch resistance, and UV-visible transmittance were systematically evaluated. Modified nano-silica markedly improved pendulum hardness and scratch resistance, with hardness increasing by nearly 50%, while flexibility remained nearly unchanged. Although hydrophobicity and optical transmittance slightly decreased with increasing nano-silica content, the transmittance remained above 90% at 4 wt% loading. For KH-550 modified systems, strict pH control (pH 8.0) and ammonia removal were critical for sol stability. This work offers a feasible approach for fabricating scratch-resistant, transparent UV-curable coatings for optical plastics.
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