材料科学
谐振器
湿度
光电子学
电介质
聚合物
绝缘体(电)
光掩模
图层(电子)
纳米技术
复合材料
抵抗
热力学
物理
作者
Zhihuan Li,Lejie Tian,Wei Wu,Feng Li,Bakyt Khaniyev,Ye. S. Mukhametkarimov,Margulan Ibraimov,Feng Zhou,Weimin Liu,Jianxi Liu
标识
DOI:10.1002/smtd.202401485
摘要
Abstract A full‐color colorimetric humidity sensor with high brightness is proposed by using a hetero‐structured dielectric film in a metal‐insulator‐metal (MIM) resonator. A humidity‐responsive polymer is designed to graft on top of a metal‐organic frameworks (MOFs) thin film (MOFs‐Polymer) as insulator layer in the resonator. Programmable tuning of reflected color is achieved by controlling the polymer thicknesses, and finite difference time domain simulation of light‐matter interactions at subwavelength scales proves the dependence of the reflected wavelength on dielectric layer thickness of the resonator. Vivid full‐color changing is realized during tracking humidity process due to swelling of the stimuli‐responsive polymer. Ultrafast response (≈0.75 s) is achieved for tracking trace H 2 O from H 2 O/methanol mixture, which is ≈10 4 faster than that of the pure polymer‐based MIM resonator. Meanwhile, the study observes significant spectral redshift because the porous MOFs film facilitates the preconcentration of external stimulus and improves the detection sensitivity of the resonator. Further, double‐channel anti‐counterfeiting multiplexing imaging is devised on the MIM resonator by photomask technology. Patterned encoding for security label is achieved on the MIM resonator by engineering humidity‐tunable pixels of Au/MOFs‐Polymer/Au and humidity‐invalid pixels of Au/MOFs/Au.
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