Li Zhihuan, Tian Lejie, Wu Wei, Feng Li, Khaniyev Bakyt, Mukhametkarimov Yerzhan, Ibraimov Margulan, Zhou Feng, Liu Weimin, Liu Jianxi
State Key Laboratory of Solidification Processing, MIIT Key Laboratory of Radiation Detection Materials and Devices, Center of Advanced Lubrication and Seal Materials, School of Materials Science and Engineering, Northwestern Polytechnical University, Xi'an, 710072, P. R. China.
Department of Physics and Technology, Al-Farabi Kazakh National University, Al-Farabi av. 71, Almaty, 050040, Kazakhstan.
Small Methods. 2025 Apr;9(4):e2401485. doi: 10.1002/smtd.202401485. Epub 2024 Oct 31.
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 HO from HO/methanol mixture, which is ≈10 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.
通过在金属-绝缘体-金属(MIM)谐振器中使用异质结构介电膜,提出了一种具有高亮度的全彩比色湿度传感器。设计了一种湿度响应聚合物,将其接枝在金属有机框架(MOF)薄膜(MOF-聚合物)顶部,作为谐振器中的绝缘层。通过控制聚合物厚度实现反射颜色的可编程调谐,亚波长尺度下光与物质相互作用的时域有限差分模拟证明了反射波长对谐振器介电层厚度的依赖性。在跟踪湿度过程中,由于刺激响应聚合物的溶胀,实现了生动的全彩变化。对于跟踪来自HO/甲醇混合物中的痕量HO,实现了超快响应(≈0.75 s),这比基于纯聚合物的MIM谐振器快约10倍。同时,该研究观察到显著的光谱红移,因为多孔MOF薄膜有助于外部刺激的预浓缩并提高谐振器的检测灵敏度。此外,通过光掩膜技术在MIM谐振器上设计了双通道防伪复用成像。通过设计Au/MOFs-聚合物/Au的湿度可调像素和Au/MOFs/Au的湿度无效像素,在MIM谐振器上实现了安全标签的图案编码。