HydrogelsPaper

Thermo-Responsive Photonic Hydrogel for Smart Window Applications

William Wu · EWA Publishing · 2025

This study presents thermo-responsive photonic hydrogels that change color with temperature, suitable for smart window applications.

High AI ConfidenceStrong SourceLaboratory ResearchEarly Research

Plain English summary

The research describes a method for creating large-area photonic crystal films combined with thermo-responsive hydrogels. These materials can change color in response to temperature changes, making them useful for applications like smart windows.

Why this matters

This technology addresses the need for energy-efficient materials that can adapt to environmental changes. By utilizing color changes for temperature indication, these hydrogels could enhance energy management in buildings and other applications.

Key findings

  • Fabrication of large-area photonic crystal films using silica nanoparticles.
  • Hydrogels embedded with photonic crystals exhibit reversible color shifts with temperature changes.
  • Demonstrated mechanical stability and optical responsiveness.
  • Potential applications include smart windows and temperature indicators.
  • Utilizes Bragg’s law for tunable structural colors.

What's new

The combination of thermo-responsive behavior with photonic crystal structures in hydrogels for smart window applications is a new approach.

Limitations

The abstract does not provide details on the scalability of the fabrication process or long-term durability of the materials.

Commercial context

The technology is still in the research phase and has not yet been commercialized.

Publication

Publisher
EWA Publishing
Publication date
October 14, 2025
Research type
Paper

Tags

More on Hydrogels

See all →
Hydrogelspaper· Jul 31, 2026

Smart Hydrogel Systems for Skin Fibrosis: Rational Design, Mechanisms, and Therapeutic Applications

This review discusses the design and therapeutic potential of smart hydrogels for treating skin fibrosis.

Ranyu Sun, Zhaojian Wang +1 · Oxford University Press (OUP)Unknown
Hydrogelspaper· Jul 15, 2026

Smart hydrogel bioinks integrated with two-dimensional nanomaterials for cardiovascular bioprinting and atherosclerosis modeling

This review highlights the potential of smart hydrogel bioinks integrated with nanomaterials for improving cardiovascular disease modeling and bioprinting.

Jiangzhou Chu, Zhi Liu +2 · AccScience PublishingUnknown
Hydrogelspaper· Jun 4, 2026

Multifunctional Hydrogel-Based Scaffolds: Integrating Conductive Nanomaterials for Smart Wound Healing Applications

This review highlights the potential of multifunctional hydrogel scaffolds integrated with conductive materials for advanced wound healing solutions.

Myoung Joon Jeon, Youjin Seol +3 · MDPI AGUnknown
Hydrogelspaper· Jun 3, 2026

Smart hydrogel dressings for advanced wound healing: from biomaterial design to microenvironment modulation

Smart hydrogel dressings are designed to enhance wound healing by modulating the microenvironment and promoting tissue regeneration.

Xiaowen Huang, Xingying Chen +4 · Frontiers Media SAUnknown
Hydrogelsarticle· May 19, 2026

Smart Hydrogel Architectures for Sensors: Narrative Review

This review highlights advances in hydrogel sensors for real-time monitoring in healthcare applications.

Jūratė Jolanta Petronienė, Tadas Rasimavičius +3 · MDPI AGUnknown
Hydrogelspaper· May 1, 2026

From Smart Hydrogel Design to 4D-Printed Scaffolds: Emerging Paradigms in Precision Drug Delivery and Regenerative Wound Therapy

This review explores the design and application of smart hydrogels and 4D-printed scaffolds for drug delivery and wound healing.

Mariana Chelu, José María Calderón Moreno +1 · MDPI AGUnknown
Method note: Summaries and ratings on this page are generated by AI from the abstract only. Read the original paper for full context. · Model: gpt-4o-mini-2024-07-18