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Towards Full-colour Tunability of Inorganic Electrochromic Devices Using Ultracompact Fabry-Perot Nanocavities

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Figshare2019-11-26 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Towards_Full-colour_Tunability_of_Inorganic_Electrochromic_Devices_Using_Ultracompact_Fabry-Perot_Nanocavities/11154791
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We use the characteristic matrix method derived from the basic principles of Maxwell’s equations to model the transmittance/reflectance spectra of the F-P nanocavities. The reflection spectra were collected by a UV–vis spectrophotometer (V660, JASCO), and the angle-resolved reflection spectra were collected by an angle-resolved spectrum system (R1, ideaoptics, China) equipped with spectrometers (NOVA-EX, ideaoptics, China) over a wavelength range of 350–850 nm. The electrochemical behaviours were studied by means of cyclic voltammetry (CV) and chronoamperometry (CA), both performed on an electrochemical workstation (CHI 760, CH Instruments, Inc., China) using a conventional three-electrode test cell for the single F-P nanocavity electrochromic electrode. A platinum wire and Ag/AgCl saturated with KCl were used as the counter and reference electrode, respectively. A two-electrode system was used for the performance testing of the fabricated electrochromic devices at room temperature.
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2019-11-26
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