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Electrochromism of dip-coated Fe-oxide Fe/Ti-oxide and Fe/Si-oxide films prepared by the sol-gel route

机译:溶胶凝胶途径制备的浸涂的Fe氧化物Fe / Ti氧化物和Fe / Si-氧化物膜的电致变色

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Iron oxide films which were synthesized via the sol-gel route from the iron (III) chloride precursor exhibit electrochromism (T$-b$/ -T$-c$/ $EQ 55% at 400 nm) in LiOH (0.01 M) electrolyte. The structure of the XRD amorphous films was identified with the help of near- normal reflection absorption (6$DGR@) (IRRA) and near-grazing incidence angle (NGIA) FT-IR spectroscopy to correspond to the nano-crystalline $gamma@-Fe$-2$/O$-3$/. Ex-situ NGIA FT-IR spectra of bleached and re-colored films were measured and it was found that the Fe-oxide films irreversibly change to the new phase in which `amorphous iron oxide' is admixed with the characteristic LO mode at 545 cm$+$MIN@1$/. Electrochemical stability of the Fe-oxide film was modified by admixing other non-absorbing Ti and Si-oxides. The structure of the mixed oxide films was identified from the corresponding IR spectra and was described as translatory disordered solid solution in which the phonon modes exhibit one mode (Fe/Ti-oxide) and two-mode (Fe/Si-oxide) behavior. Electrochemical investigations revealed that the films are able to uptake reversibly Li$+$PLU$/, Na$+$PLU$/, K$+$PLU$/ ions with Q/d values in the range 0.1 - 0.31 mQ/cm$+2$/nm. The electrochromic properties of the films investigated were established from the measured in-situ UV-VIS spectroelectrochemical measurements which revealed that the electrochromic efficiencies ($Delta OD/Q$-(de)int$/) are in the range of 6 - 14 cm$+2$//C. The nature of the electrochromic process is discussed and correlated to the absorption edges of the various iron oxygenated compounds.
机译:通过从铁(III)氯化物前体的溶胶 - 凝胶途径合成的氧化铁膜在LioH(0.01米)中显示电致变量(0.01米)的电致变量(400nm)电解质。借助近常反射吸收(6 $ DGR @)(IrrA)和近地放牧入射角(NGIA)FT-IR光谱来鉴定XRD非晶膜的结构,以对应于纳米结晶$ Gamma @ -fe $ -2 $ / o $ -3 $ /。测量漂白和重新涂膜的ex-situ ngia ft-Ir光谱,发现Fe-氧化物膜不可逆地改变了在545cm的特性Lo模式混合的新阶段$ + $ min @ 1 $ /。通过混合其他非吸收Ti和Si-氧化物来改变Fe氧化膜的电化学稳定性。从相应的IR光谱鉴定混合氧化膜的结构,并被描述为平移失调的固溶体,其中声子模式表现出一种模式(Fe / Ti氧化物)和两种模式(Fe / Si-氧化物)行为。电化学调查显示,电影能够可逆地吸收Li $ + $ PLU $ /,NA $ + $ PLU $ /,K $ + $ PLU $ /离子,Q / D值范围为0.1 - 0.31 MQ / cm $ + 2 $ / nm。研究的薄膜的电致变色特性是从测量的原位UV-Vis光谱电化学测量中建立的,这揭示了电致变色效率($ Delta OD / Q $ - (de)int $ /)在6 - 14厘米的范围内$ + 2 $ // c。讨论电致变色过程的性质和与各种铁含氧化合物的吸收边缘相关。

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