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Stretchable Freestanding Films of 3D Nanocrystalline Blue Phase Elastomer and Their Tunable Applications

机译:可拉伸的3D纳米晶蓝相弹性体和可调谐应用的独立薄膜

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摘要

Given that it is a potential medium for 3D manipulation of photons in the forward-looking technology of quantum optics, nonlinear optics, electronics, nanomaterials, and bionics, 3D photonic crystal (PhC) is a promising material of strategic significance and has great impact on scientific development. Blue phase (BP), a liquid crystalline mesophase with unique nanoscaled 3D PhC features, has been shown to contain significant potential values in fundamental studies and technological applications. However, thus far, the environmental stability of BP devices remains a puzzling issue of material exploitation. Therefore, in this study, stretching-tunable BP elastomer (BPE) photonic bandgap (PBG) free-standing films are fabricated via full photopolymerization. The BPE films exhibit benefit-specific features, including sharp PBG with high reflectivity and flexible tunability in the visible region, high thermal stability, and good mechanical ductility and resistance in chemicals. These properties are attributed to the pre-developed, fully-reactive mesogenic materials employed, which show BP states in a wide temperature range, including room temperature. Additionally, mirrorless laser applications with flexible tunability are also realized in this study. The freestanding BPE film can be used as a prototype instrumentality to promote the future development of multifunctional intelligent applications in lasers, sensors, displays, intelligent lightings, lidars, micro-robots and antennas.
机译:鉴于它是量子光学,非线性光学,电子,纳米材料和仿生学的前瞻性技术中光子的3D操纵的潜在介质,3D光子晶体(PHC)是一种有希望的战略意义的材料,对科学发展。蓝相(BP),具有独特的纳米级3D PHC特征的液晶中间相级,已显示在基本研究和技术应用中含有显着的潜在价值。然而,到目前为止,BP器件的环境稳定性仍然是材料剥削的令人费解的问题。因此,在该研究中,通过全光聚合制造拉伸可调性BP弹性体(BPE)光子带隙(PBG)去脱膜。 BPE薄膜表现出特定的益处特征,包括尖锐的PBG,具有高反射率和可见区域中的灵活可调性,高热稳定性,以及化学品中的良好机械延展性和耐受性。这些性质归因于预发育的全反应性介性材料,其在宽温度范围内显示出BP状态,包括室温。此外,还在本研究中实现了具有柔性可调性的无反式激光应用。独立式BPE薄膜可用作原型仪器,以促进激光,传感器,显示,智能灯,Lidars,微机器人和天线中的多功能智能应用的未来发展。

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