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期刊论文
Optical absorption edge evolution of vanadium pentoxide films duringlithium intercalation
Thin Solid Films 485 (2005) 284-289,-0001,():
The influence of lithium intercalation on the optical absorption of vanadium pentoxide films is reported in this paper. Thin films wereprepared by thermal evaporation followed by annealing in air. Lithium was inserted electrochemically so that LixV2O5 (0≤x≤0.54) wasobtained. The pristine and lithium inserted films were characterized by X-ray diffraction (XRD), optical spectroscopy, and ellipsometry. Theoptical absorption coefficient was calculated from measured normal transmittance and reflectance spectra. XRD analysis has shown that theas-grown V2O5 films were amorphous, becoming microcrystal after annealing at 350℃. The optical absorption spectra of all the samplesexhibited two distinct regions of behavior: at high-energy where (ahm)1/2 varied linearly with the photonic energy hm, and a low-energy tail.The blue shift of the optical absorption edge is attributed to the Fermi level going into the conduction band after lithium insertion, and therelation between the change of the optical gap and the inserted electron concentration is interpreted in terms of a Burstein-Moss shift. Theresults confirm that the anodic electrochromism of V2O5 thin films is due to the blue shift of the absorption edge, and the near-infraredcathodic electrochromism arises from absorption of small polarons in V205.
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