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March 3, 2026Nano Research2 citationsOpen Access

Colloidal electrochromic photonic crystals: Insights into materials, mechanism, and performance enhancement

SYSiyi YuWZWeihua ZhangXLXimeng Lv

Key Points

  • Colloidal electrochromic photonic crystals demonstrate significant changes in structural colors when subjected to an electric field, suggesting versatile applications in displays and camouflage.
  • The review emphasizes the optimization of colloidal particles and dispersants, leading to improved electrochromic performance metrics that enhance usability in practical applications.
  • Assessment includes a thorough analysis of electrochromic mechanisms alongside recent advancements in material synthesis and physical characteristic evaluation standards.
  • Future perspectives highlight ongoing challenges in the development of colloidal EPC materials, indicating the potential for innovation in smart device applications.

Abstract

Colloidal electrochromic photonic crystals (EPC) are optical material which changes their photonic band gap and structural colors under electric field due to the electrophoresis of colloidal particles. They have attracted great interest in recent years because of their great potential in color displays, smart windows, adaptive camouflage, and various functional devices. This review aims to introduce the fundamentals and recent progress of colloidal EPCs, which include the chemical composition and synthesis, the physical characteristics, the electrochromic mechanism, and the evaluation standards. Meanwhile, this review also summarizes the effective approaches to enhance the EPC performances from the perspective of colloidal particles, dispersant, electrode, and driving waveforms. Challenges and perspectives are finally provided for the future development of colloidal EPC materials.

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Cite This Study

Yu et al. (2026) studied this question.

synapsesocial.com/papers/69a76563badf0bb9e87d8ee6https://doi.org/10.26599/nr.2026.94908508
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