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Photonic Resins: Designing Optical Appearance viaBlock Copolymer Self-Assembly

机译:光子树脂:通过设计光学外观嵌段共聚物自组装

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摘要

Despite a huge variety of methodologies having been proposed to produce photonic structures by self-assembly, the lack of an effective fabrication approach has hindered their practical uses. These approaches are typically limited by the poor control in both optical and mechanical properties. Here we report photonic thermosetting polymeric resins obtained through brush block copolymer (BBCP) self-assembly. We demonstrate that the control of the interplay between order and disorder in the obtained photonic structure offers a powerful tool box for designing the optical appearance of the polymer resins in terms of reflected wavelength and scattering properties. The obtained materials exhibit excellent mechanical properties with hardness up to 172 MPa and Young’s modulus over 2.9 GPa, indicating great potential for practical uses as photonic coatings on a variety of surfaces.
机译:尽管已经提出了各种各样的通过自组装来制造光子结构的方法,但是缺乏有效的制造方法阻碍了它们的实际应用。这些方法通常受到光学和机械性能控制不佳的限制。在这里,我们报告通过刷嵌段共聚物(BBCP)自组装获得的光子热固性聚合物树脂。我们证明,所获得的光子结构中有序和无序之间相互作用的控制提供了一个功能强大的工具箱,可根据反射波长和散射特性设计聚合物树脂的光学外观。所获得的材料具有优异的机械性能,硬度高达172 MPa,杨氏模量超过2.9 GPa,这表明其在各种表面上作为光子涂层的实际应用具有巨大潜力。

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