Structure Engineering In Hexagonal Tungsten Trioxide/Oriented Titanium Dioxide Nanorods Arrays With High Performances For Multi-Color Electrochromic Energy Storage Device Applications

CHEMICAL ENGINEERING JOURNAL(2021)

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摘要
A novel porous structure of hexagonal WO3/oriented TiO2 nanorods arrays (h-WO3/TiO2 NRAs) hybrid film was successfully prepared by a facile hydrothermal method. Benefiting from elaborately structure engineering, the hybrid film exhibited large transmittance modulation (Delta T-633nm = 73.45%), high coloration efficiency (69.2 cm(2).C-1), fast Li+ ions insertion kinetics (6.6 s/2.0 s for t(c)/t(b)), stable cyclic stability (maintains 92.9% of initial Delta T after 2000 cycles) as well as areal specific capacitance of 10.93 mF.cm(-2) at the current density of 0.1 mA.cm(-2). An electrochromic energy storage device (EESD) with six multi-color modulation modes (light gray, dark olive green, yellow green, lime green, dark green and dark blue) was successfully assembled by h-WO3/TiO2 NRAs hybrid film and electrodeposited-V2O5 film. Based on the excellent electrochromic and pseudocapacitive properties, the EESD promised a smart visual monitoring of the energy storage level and can light up a LED after charging, indicating a good energy storage application prospect.
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关键词
h-WO3/TiO2 NRAs, porous structure, fast Li+ ions insertion kinetics, electrochromic energy storage, multi-color modulation
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