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大规模生物启发的具有尺寸不敏感性的阵列的柔性抗反射薄膜。

Large-Scale Bio-Inspired Flexible Antireflective Film with Scale-Insensitivity Arrays.

机构信息

Key Laboratory of Bionic Engineering, Ministry of Education, Jilin University, Changchun 130022, China.

College of Chemistry and Chemical Engineering, Northwest Normal University, Lanzhou 730070, China.

出版信息

ACS Appl Mater Interfaces. 2021 May 19;13(19):23103-23112. doi: 10.1021/acsami.1c02046. Epub 2021 May 11.

Abstract

Natural creatures can always provide perfect strategies for excellent antireflection (AR), which is valuable for photovoltaic industry, optical devices, and flexible displays. However, limited by precision, it is still difficult to guarantee the consistency between the artificial structures and the original biological structures. Here, a novel large-scale flexible AR film is inspired by the cicada wings and successfully fabricated with a recycled template. On the one hand, the adjustable structures on porous templates make it possible to optimize the design of AR structure parameters toward the practical demand. On the other hand, it breaks the limitation of the biological organism size, accomplishing the replication of AR nanostructure units in a large scale. Interestingly, even if the film is covered by enlarged dome cone arrays, it still maintains almost perfect AR property, achieving excellent scale-insensitivity AR performance. This work numerically and experimentally investigates its scale-insensitivity AR performance in detail. Compared with subwavelength nanocones, enlarged cones change the original optical behaviors, and the proportion of transmitted light is reduced while scattering and absorption increase. Based on this, these bio-inspired scale-insensitivity AR arrays could be used in flexible displays, photothermic conversion, solar cells, and so on.

摘要

天然生物总能为优秀的抗反射(AR)提供完美的策略,这对光伏产业、光学器件和柔性显示器很有价值。然而,受限于精度,仍然难以保证人工结构与原始生物结构之间的一致性。在这里,受蝉翼启发,设计了一种新颖的大规模柔性 AR 膜,并成功地使用回收模板制造了该膜。一方面,多孔模板上的可调结构使得优化 AR 结构参数的设计能够满足实际需求。另一方面,它打破了生物有机体尺寸的限制,实现了 AR 纳米结构单元的大规模复制。有趣的是,即使该膜被放大的圆顶锥阵列覆盖,它仍然保持几乎完美的 AR 性能,实现了出色的尺度不敏感性 AR 性能。这项工作详细地数值和实验研究了其尺度不敏感性 AR 性能。与亚波长纳米锥相比,放大的锥改变了原始的光学行为,透射光的比例减少,而散射和吸收增加。基于此,这些受生物启发的尺度不敏感性 AR 阵列可用于柔性显示器、光热转换、太阳能电池等领域。

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