论文标题

一种多功能的跨表面,可实现自我清洁和动态颜色响应的超级净化性

A versatile metasurface enabling superwettability for self-cleaning and dynamic color response

论文作者

Lu, Jinlong, Sain, Basudeb, Georgi, Philip, Protte, Maximilian, Bartley, Tim, Zentgraf, Thomas

论文摘要

由于能够使用亚波长度结构调节光线,因此元时间为各种平坦元素和设备提供了应用。同时,工作原理引起了至关重要的问题和挑战,以保护跨表面免受灰尘或清洁日常使用期间不可避免的污染物。在这里,利用具有自我清洁特性的智能生物启发的表面,我们显示了一种多功能的介电元表面,从获得的超嗜水或准嗜性溶性状态中受益。该设计是通过将元面嵌入大量润湿性支撑结构中来实现的,该结构在制造方面高效,并同时实现光学和润湿功能。超疏水状态可以增强水的光学响应,而准溶质性状态赋予脆弱的天线自我清洁粉尘污染的能力。此外,可以通过可重复的方式在这两种润湿性或功能状态之间轻松切换和重复元表面,而不会降低光学性能。拟议的设计策略将为智能跨国带来新的机会,并具有改善的光学性能,多功能性和身体稳定性。

Metasurfaces provide applications for a variety of flat elements and devices due to the ability to modulate light with subwavelength structures. The working principle meanwhile gives rise to the crucial problem and challenge to protect the metasurface from dust or clean the unavoidable contaminants during daily usage. Here, taking advantage of the intelligent bioinspired surfaces which exhibit self-cleaning properties, we show a versatile dielectric metasurface benefiting from the obtained superhydrophilic or quasi-superhydrophobic states. The design is realized by embedding the metasurface inside a large area of wettability supporting structures, which is highly efficient in fabrication, and achieves both optical and wettability functionality at the same time. The superhydrophilic state enables an enhanced optical response with water, while the quasi-superhydrophobic state imparts the fragile antennas an ability to self-clean dust contamination. Furthermore, the metasurface can be easily switched and repeated between these two wettability or functional states by appropriate treatments in a repeatable way, without degrading the optical performance. The proposed design strategy will bring new opportunities to smart metasurfaces with improved optical performance, versatility and physical stability.

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