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Magnetically Actuated Dynamic Iridescence Inspired by the Neon Tetra

机译:由霓虹Tetra启发的磁动态彩色透明度

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摘要

Inspired by the tropical fish neon tetra, we report a mechanism to achieve dynamic iridescence that can be magnetically tuned. This approach is based on the tilting of periodic photonic nanostructures, as opposed to the more common strain-induced color tuning. In this method, a periodic array of magnetic nanopillars serves as a template to guide the assembly of iron oxide nanoparticles when magnetized in a liquid environment. The periodic local fields induced by the magnetic template anchor the assembled particle columns, allowing the structure to tilt about the base when the angle of the applied field is changed. This effect emulates a microscopic "Venetian blind" and results in dynamic optical properties through structural coloration that is tunable in real time. The fabricated prototype demonstrates tunable reflectance spectra with peak wavelength shift from 528 to 720 nm. The magnetic actuation mechanism is reversible and has a fast response time around 0.3 s. This structure can be implemented on an arbitrary surface as dynamic camouflage, iridescent display, and tunable photonic elements, as well as in other applications such as active fluidic devices and particle manipulation.
机译:灵感来自热带鱼霓虹Tetra,我们报告了一种实现可以磁直调节的动态彩虹色的机制。该方法基于周期性光子纳米结构的倾斜,而不是更常见的应变诱导的颜色调谐。在该方法中,磁性纳米粒子的周期性阵列用作模板,以在液体环境中磁化时引导氧化铁纳米颗粒的组装。由磁模板锚定组装颗粒柱引起的周期性局部场,允许结构在施加的场的角度改变时围绕基座倾斜。这种效果刺激了微观的“威尼斯盲”并通过实时可调的结构着色导致动态光学性质。制造的原型演示可调谐反射光谱,峰值波长偏移从528到720nm。磁性致动机构是可逆的,并且具有快速响应时间约为0.3秒。该结构可以在任意表面上实现为动态伪装,彩虹色显示和可调谐光子元件,以及其他应用,例如有源流体装置和粒子操纵。

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