EventsThe 12th International Electronic Conference on Sensors and Applications
Published
This submission belongs to the session S9. Student Session of the event The 12th International Electronic Conference on Sensors and Applications
Published date
07 Nov, 2025
Academic Editor
author-avatarStefano Mariani
Citation
Zhenjiang Tan, Wenwei Tang, Cheng Chen, A Copper Ion Sensitive Hdrogel Photonic Crystal Fim, in Proceedings of The 12th International Electronic Conference on Sensors and Applications, 12 November–14 November 2025, MDPI: Basel, Switzerland
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A Copper Ion Sensitive Hdrogel Photonic Crystal Fim

Zhenjiang Tan 1
image
1. Shanghai Key Laboratory of Engineering Materials Application and Evaluation, School of Energy and Materials, Shanghai Polytechnic University, Shanghai 201209, China,Shanghai Thermophysical Properties Big Data Professional Technical Service Platform, Shang, China
2. School of Mathematics Physics and Statistics, Shanghai Polytechnic University, Shanghai 201209, China, China
Abstract

Photonic crystals are man-made submicron crystal structures consisting of two or more dielectric materials spatially arranged in a periodic manner.Photonic crystals have a unique photonic band gap (PBG) property. The position of the photonic bandgap can be modulated by change the lattice spacing or refractive index in order to control the propagation of light. Hydrogel is a 3D polymer matrix with large amount of water that can undergo a volume phase transition when stimulated by the external environment. By combining the optical characteristics of photonic crystals with the stimulatory response of hydrogels enables the conversion of chemical signals to optical signals and the detection of ions. In this work, polystyrene (PS) nano-spheres were uitlized to prepare photonic crystal templates with bright structural color by vertical deposition, and the mixture of hydroxyethyl methacrylate (HEMA) and vinyl imidazole (VIM) was injected into the photonic crystal templates and the hydrogel films were obtained by photo-polymerization under UV 365 nm exposure for 30 min. The obtained photonic crystal hydrogel films were sensitive to copper ion in buffer solution, the diffraction wavelengths blue-shifted with the copper ion concentration increased. The response time of photonic crystal hydrogel was 3 min, and the sensor film can be used for several times without property loss.

Keywords
Photonic crystals,Hydrogel
Sensor
Manuscript
Poster
A Copper Ion Sensitive Hydrogel Phetonic Crystal Film.pdf
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