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Multi-Color States of High Contrast Nano Prussian Yellow Electrochromic Film
被引:0
|作者:
Baioun A.
[1
]
Kellawi H.
[1
]
机构:
[1] Department of Chemistry, Electrochemical Laboratory, Faculty of Science, Damascus University, Damascus
关键词:
Coloration Efficiency (CE);
Contrast Ratio (CR);
Cyclic Voltammetry (CV);
Electrochromic film;
Prussian Blue (PB);
Prussian White (PW);
Prussian Yellow (PY);
redox charge/discharge coloration;
D O I:
10.2174/1876402914666220504143652
中图分类号:
学科分类号:
摘要:
Aim: Construction of electrochromic device via Prussian yellow nanofilm on glass electrode. Background: Energy conservation is one of the primary research topics nowadays. Electrochromic devices with low power consumption and short stable switching periods are well suited to energy-efficient applications, e.g., smart windows, car mirrors, displays, and electronic papers. Objective: Preparation of electrochromic Prussian yellow nanofilm on ITO glass by a simple chemical facile method and study of its electrochromic features. Methods: Prussian yellow nanofilm (iron (III) hexacyanoferrate (III)), was prepared by immersing the substrate in a solution of ferric nitrate and Potassium hexacyanoferrate. Prussian yellow nanofilm is characterized by ultraviolet-visible (Uv-Vis) spectroscopy, cyclic voltammetry and electrochemical impedance spectroscopy. Prussian yellow nanofilm shows an intense yellow color when it is in a pris-tine state. Results: Resultant Prussian yellow nanofilm underwent reversible redox reactions accompanied by color changes from Prussian yellow to Prussian green to further Prussian blue, then to Prussian white. The transmittance of Prussian yellow nanofilm varies from 21% for colored state at 450nm to 81 % (for fully bleached) at 0.9V. The contrast ratio and ratio of optical density to charge density were ex-amined and the coloration efficiency was calculated to be 299.6 cm2C-1. Conclusion: Prussian yellow can be very simply prepared and used as an efficient, fast switching elec-trochromic device with high color contrast. © 2023 Bentham Science Publishers.
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页码:118 / 126
页数:8
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