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Small· 2026Q1

Scalable and Durable Symmetric Electrochromic Devices via Zinc–Iodine Electrodeposition for Smart Window Applications

Xiaoying Ma, Mingjun Dai, Zhijuan Zhao, Chuanxi Zhao et al.

Short summary

A novel symmetric electrochromic device (ECD) uses zinc and iodine electrodeposition/dissolution, achieving 85% optical modulation and retaining 70% after 30,000 cycles without pre-deposited electrodes.

AI-generated from the title and abstract; the full text is not read.

Key points

  • Introduces a symmetric ECD using zinc and iodine electrodeposition/dissolution, simplifying structure by omitting pre-deposited electrodes.
  • Achieves a high optical modulation of approximately 85% at 600 nm.
  • Exhibits rapid response times of 4.7s (coloring) and 3.9s (bleaching).
  • Demonstrates exceptional durability, retaining ~70% optical modulation after 30,000 cycles.
  • A large-area (20x20 cm²) device shows excellent color uniformity, proving scalability.

AI-generated from the title and abstract; the full text is not read.

Abstract

ABSTRACT Electrochromic (EC) materials represent a class of highly promising smart materials, with the core advantage of dynamically modulating optical properties in response to an applied voltage. Although EC materials have evolved from transition metal oxides to ion‐based electrodeposition films, their commercialization remains hindered by high costs and complex manufacturing processes. This study introduces a symmetric electrochromic device (ECD) based on Zinc and Iodine electrodeposition/dissolution, which demonstrates exceptional optical modulation performance. It features a minimalist structure consisting of two pristine TCO glass substrates sandwiching a single injected electrolyte without any pre‐deposited electrodes. The device achieves a high optical modulation window of approximately 85% at 600 nm, exhibits rapid response time (reaching 90% of coloring/bleaching in just 4.7 s/3.9 s), and, most importantly, retains structural integrity over 30 000 cycles, retaining approximately 70% of the initial optical modulation. In addition, a large‐area device (20 × 20 cm 2 ) exhibits excellent color uniformity, demonstrating outstanding scalability and marking a major breakthrough in the development of EC smart windows.

The authors' abstract, as published at the source. Small, 2026 · DOI ↗

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Field: Polymers and Plastics

Polymers and PlasticsMaterials Science