首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Robust and flexible thermal-plasticizing 3D shaped composite films with invariable and brilliant structural color
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Robust and flexible thermal-plasticizing 3D shaped composite films with invariable and brilliant structural color

机译:坚固且柔韧的热塑性3D形复合薄膜,具有不变和辉煌的结构颜色

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摘要

In this paper, we present a novel flexible thermal-plasticizing 3D shaped composite film with invariable structural color through an organic-inorganic hybrid matrix design: the infiltrated thermoplastic polymer (PHMP) is employed as a functional organic part to offer the ability of flexible programming and fixing 3D shapes via reversible thermal transformations between elasticity and plasticity; the hollow silica photonic crystals (PCs), as a structure supporting matrix, together with PHMP provide invariable structural color in the whole thermal-plasticizing process and even under extremely high mechanical tension and compression. With this strategy, the obtained hollow silica/PHMP composite films can be 3D reshaped repeatedly and freely. A high degree of cross-linking in the PHMP and supporting skeleton of hollow silica PCs ensures its robust properties against external mechanical stretching and compression. In addition, the novel composite films also possess a bright structural color resulting from the introduction of carbon absorbed in the hollow silica with our synthesis scheme. Overall, the combination of flexible thermoplastic properties and invariable structural color for the as-prepared composite films will promote applications in many color-related fields, such as 3D packages and artistic decorating.
机译:在本文中,我们通过有机无机杂交矩阵设计提出了一种具有不变结构颜色的新型柔性热塑化3D形复合膜:渗透的热塑性聚合物(PHMP)用作功能性有机部分,以提供灵活的编程能力通过弹性和可塑性之间的可逆热变换来固定3D形状;作为结构支撑基质的中空二氧化硅光子晶体(PC)以及PHMP在整个热塑化过程中提供不变的结构颜色,甚至在极高的机械张力和压缩下。通过该策略,所获得的中空二氧化硅/ pHMP复合膜可以是多重和自由重新装入的3D。 PHMP中的高度交联和中空二氧化硅PC的骨架的高度交联可确保其防止外部机械拉伸和压缩的鲁棒性能。此外,新颖的复合薄膜还具有由在中空二氧化硅中吸收的碳引入与我们的合成方案产生的亮结构颜色。总的来说,柔性热塑性性能和适得的复合材料的不变结构颜色的组合将促进许多颜色相关领域的应用,例如3D包装和艺术装饰。

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