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Spray-Coated Melanin/PEDOT:PSS Films for Sustainable Organic Electrochemical Transistors
Published on: October 28, 2025
Composite Film of Cellulose and PEDOT:PSS for Sustainable and Stable Electrochromic Materials
Ruiying Zhang1, Fengwei Sun1, Zhixuan Yang1
1College of Material Engineering, National Forestry and Grassland Administration Key Laboratory of Plant Fiber Functional Materials, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Abstract:
Flexible and environmentally friendly electrochromic devices (ECDs) show great application potential for active light management, such as smart color-changing windows and color-changing sunglasses. Natural cellulose, as an environmentally friendly, low-cost, and renewable material, has advanced the development of sustainable ECDs, while its hydrophilic nature leads to unstable performance, especially in humid and rainy conditions. Therefore, we presented the sandwich-structured cellulose acetate-cellulose (CA-C)/PEDOT:PSS by layer-by-layer assembly, which displays high water resistance and mechanical stability as well as a fast transmittance response to the external voltage. By applying a forward voltage of 3 V, the transmittance of the prepared electrochromic composite film quickly changes from 83% to 40%; under a backward voltage, it recovers to its initial state within 2 s. Additionally, the cellulose-based composite film also demonstrates stable electrochromic capability after 500 bending cycles or 24 h of working in an outside environment, even under high humidity. The developed CA-C/PEDOT:PSS electrochromic composite film paves the way toward advancing electrochromic materials to be more sustainable and stable in a low-carbon society.

