2016
DOI: 10.1063/1.4964254
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Controlling the optical properties of sputtered-deposited LixV2O5 films

Abstract: This study examines the influence of lithium intercalation on the optical properties of vanadium pentoxide films. The films with a thickness between 400 and 1000 nm were prepared by DC magnetron sputter deposition. Cyclic voltammetry and chronopotentiometry were used to set a well defined lithiation state of the LixV2O5 films between x = 0 and x = 1. The optical properties of these films were measured by optical reflectometry in the wavelength range between 500 and 1700 nm. From the reflectance data, the refra… Show more

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Cited by 13 publications
(21 citation statements)
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“…The reflectivity and therefore the n and k values of the material can be influenced systematically with proton insertion. The behavior of H x V 2 O 5 is comparable with Li x V 2 O 5 [18] although the absolute change of the optical constants, especially the absorption coefficient k , is smaller with proton intercalation than with lithiation. However, one advantage over Li x V 2 O 5 is that it is easier to handle in non‐inert environments, as there is no need for moisture‐sensitive materials like metallic lithium.…”
Section: Discussionmentioning
confidence: 83%
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“…The reflectivity and therefore the n and k values of the material can be influenced systematically with proton insertion. The behavior of H x V 2 O 5 is comparable with Li x V 2 O 5 [18] although the absolute change of the optical constants, especially the absorption coefficient k , is smaller with proton intercalation than with lithiation. However, one advantage over Li x V 2 O 5 is that it is easier to handle in non‐inert environments, as there is no need for moisture‐sensitive materials like metallic lithium.…”
Section: Discussionmentioning
confidence: 83%
“…For comparison with literature values of e. g. lithiated V 2 O 5 , it is helpful to determine~n/~x and~k/~x at a distinguished wavelength. According to [18]~n /~x is À 1 and~k/…”
Section: Resultsmentioning
confidence: 99%
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“…(where I is a sufficiently low applied current, and t is the time necessary to apply a current to obtain the lithium concentration). 212 The lithium concentration x in Li x V 2 O 5 is characteristic of the film color. For example, when x = 0.5 and 1, green and blue colors are observed, as shown in eqn ( 15) and ( 16), respectively.…”
Section: Electrochromic Process Inmentioning
confidence: 99%