首页|Nanograting-Based Dynamic Structural Colors Using Heterogeneous Materials

Nanograting-Based Dynamic Structural Colors Using Heterogeneous Materials

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Nanograting-Based Dynamic Structural Colors Using Heterogeneous Materials
Dynamic structural colors can change in response to different environmental stimuli.This ability remains effective even when the size of the species responsible for the structural color is reduced to a few micrometers,providing a promising sensing mechanism for solving microen-vironmental sensing problems in micro-robotics and microfluid-ics.However,the lack of dynamic structural colors that can encode rapidly,easily integrate,and accu-rately reflect changes in physical quantities hinders their use in microscale sensing applications.Herein,we present a 2.5-dimensional dynamic structural color based on nanogratings of heterogeneous materials,which were obtained by interweaving a pH-responsive hydrogel with an IP-L photoresist.Transverse gratings printed with pH-responsive hydrogels elongated the period of longitudinal grating in the swollen state,resulting in pH-tuned structural colors at a 45°incidence.Moreover,the patterned encoding and array printing of dynamic structural colors were achieved using grayscale stripe images to accurately encode the periods and heights of the nanogrid structures.Overall,dynamic structural color networks exhibit promising potential for applications in information encryption and in situ sensing for microfluidic chips.

Dynamic structural colorsFour-dimensional printingpH-responsiveNanogridHeterogeneous materials

Jingang Wang、Haibo Yu、Jianchen Zheng、Yuzhao Zhang、Hongji Guo、Ye Qiu、Xiaoduo Wang、Yongliang Yang、Lianqing Liu

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State Key Laboratory of Robotics,Shenyang Institute of Automation,Chinese Academy of Sciences,Shenyang 110016,People's Republic of China

University of Chinese Academy of Sciences,Beijing 100049,People's Republic of China

Dynamic structural colors Four-dimensional printing pH-responsive Nanogrid Heterogeneous materials

2025

纳微快报(英文)
上海交通大学

纳微快报(英文)

ISSN:2311-6706
年,卷(期):2025.17(3)