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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Hollow silica opals/cellulose acetate nanocomposite films with structural colors for anti-counterfeiting of banknotes
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Hollow silica opals/cellulose acetate nanocomposite films with structural colors for anti-counterfeiting of banknotes

机译:中空二氧化硅蛋白质/醋酸纤维素纳米复合膜,具有结构颜色,用于钞票的防伪

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摘要

Utilizing biomass materials to construct photonic bandgap materials has attracted increasing attention due to their environmental friendliness. In this work, we introduced biodegradable cellulose acetate to the interstice of hollow silica 3D photonic crystals (PCs) for building hollow silica opals/cellulose acetate nanocomposite films. In the films, the hollow silica 3D PCs offered well-ordered arrays for producing structural colors. Cellulose acetate with excellent film forming ability served as a matrix endowing the PCs frameworks with mechanical stability, including flexibility, robust tensile strength and the ability of repetitive bending. The prepared colored composite films possessed high transparency and can work as anti-counterfeiting labels for banknotes when patterned by a facile mask method. Compared with other reported PCs which are responsive to external stimuli in the field of anti-counterfeiting, these films have the advantage of quick color-transparency switching just by changing the viewing angle. Except for application in security materials, the colored composite films also showed potential as package materials due to their biodegradability.
机译:利用生物质材料构建光子带隙材料由于其环境友好而引起了越来越多的关注。在这项工作中,我们向中空二氧化硅3D光子晶体(PCS)的可生物降解的纤维素乙酸乙酸乙酸纤维素用于建筑中空二氧化硅,乙酸醋酸纤维素纳米复合膜。在薄膜中,中空二氧化硅3D PCS为生产结构颜色提供了有序的阵列。乙酸纤维素具有优异的成膜能力,作为赋予PCS框架具有机械稳定性的基质,包括柔韧性,鲁棒拉伸强度和重复弯曲的能力。制备的彩色复合薄膜具有高透明度,并且当通过容易掩模方法图案化时,可以作为纸币的抗假性标签。与响应于防伪领域的外部刺激的其他PC相比,这些薄膜仅通过改变视角来快速透明切换的优点。除了在安全材料中应用,由于其生物降解性,彩色复合薄膜还显示出作为封装材料的潜力。

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