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Effect of crystallinity on electrochromic mechanism of LixWO3 thin films

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Abstract Intercalation of lithium ions in amorphous tungsten oxide films and in monoclinic polycrystalline tungsten oxide films has been studied using electrochemical analyses and Raman spectroscopy. We present direct evidence for W 5+ 5d-electron localization in amorphous tungsten oxide films upon lithium ion and electron intercalation by comparing the Raman spectra of amorphous and crystalline tungsten oxide films. We observe that when lithium ions and electrons are inserted into the crystalline tungsten oxide films, the monoclinic structure of the material proceeds to progressively increased symmetry. On the other hand, when lithium ions and electrons are inserted into amorphous tungsten oxide films, the inserted electrons are localized in W 5+ sites and polarize their surrounding lattice to form small polarons. The extra Raman peaks due to the W 5+ O single bonds and W 5+ O double bonds appear at 330 and 450 cm −1 , respectively.

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Solid State Ionics

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0167-2738

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