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用于红外开关和完美吸收的电控金属-绝缘体异质结构演变

Electrically Controlled Metal-Insulator Heterogeneous Evolution for Infrared Switch and Perfect Absorption.

作者信息

Cao Xuefeng, Sun Jiahui, Fang Yuan, Qiao Xurong, Cai Shenghao, Qiu Yuhao, Chen Xuegang, Sun Yifei, Huang Jijie, Ding Xiangdong, Sun Jun, Wan Chenghao, Zhang Zhen

机构信息

State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an, 710049, China.

School of Materials, Shenzhen Campus of Sun Yat-sen University, Shenzhen, 518107, China.

出版信息

Adv Sci (Weinh). 2025 Apr;12(16):e2416420. doi: 10.1002/advs.202416420. Epub 2025 Feb 25.

Abstract

Active switching, which enables multifunctionality within a single optical component, is essential for reconfigurable infrared photonic systems such as radiation engineering, sensing, and communication. Metamaterials offer a solution but involve complex design and fabrication. A simpler approach with a planar layered structure becomes promising for offering economical manufacturing, easier integration, and scalability. However, it requires an active medium with giant tunability and effective modulation mechanisms. Here, an electrically controlled reversible infrared switching is demonstrated via a single layer of perovskite nickelate on an opaque substrate. Driven by the evolution of the refractive index during an electrically triggered proton-mediated metal-to-insulator transition, the device transforms from a high reflective (R ≈0.74) to a low reflective state (R ≈0.09) at λ = 7-10 µm. A temperature-independent perfect absorption (A > 0.99 at λ = 11.6-12.1 µm) emerges in the partially hydrogenated state with the mixture of the metal and insulator phases, which results in a modulation of emissivity ≈0.623 at λ = 7-14 µm. The switching behavior is tunable over a wide temperature and wavelength range, offering a versatile path for adaptive infrared applications.

摘要

有源开关能够在单个光学元件内实现多功能性,对于可重构红外光子系统(如辐射工程、传感和通信)至关重要。超材料提供了一种解决方案,但涉及复杂的设计和制造。具有平面分层结构的更简单方法有望实现经济制造、更容易集成和可扩展性。然而,它需要具有巨大可调性的有源介质和有效的调制机制。在此,通过在不透明衬底上的单层钙钛矿镍酸盐展示了电控可逆红外开关。在电触发质子介导的金属-绝缘体转变过程中,由折射率的变化驱动,该器件在λ = 7-10 µm处从高反射状态(R ≈0.74)转变为低反射状态(R ≈0.09)。在部分氢化状态下,金属相和绝缘体相混合出现了与温度无关的完美吸收(在λ = 11.6-12.1 µm处A > 0.99),这导致在λ = 7-14 µm处发射率调制约为0.623。开关行为在很宽的温度和波长范围内可调,为自适应红外应用提供了一条通用途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/affa/12021118/9e9412a9f823/ADVS-12-2416420-g003.jpg

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