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3D vanadium oxide inverse opal growth by electrodeposition

机译:通过电沉积3D氧化钒反蛋白石生长

摘要

Three-dimensional vanadium pentoxide (V2O5) material architectures in the form of inverse opals (IOs) were fabricated using a simple electrodeposition process into artificial opal templates on stainless steel foil using an aqueous solution of VOSO4.χH2O with added ethanol. The direct deposition of V2O5 IOs was compared with V2O5 planar electrodeposition and confirms a similar progressive nucleation and growth mechanism. An in-depth examination of the chemical and morphological nature of the IO material was performed using X-ray crystallography, X-ray photoelectron spectroscopy, Raman scattering and scanning/transmission electron microscopy. Electrodeposition is demonstrated to be a function of the interstitial void fraction of the artificial opal and ionic diffusivity that leads to high quality, phase pure V2O5 inverse opals is not adversely affected by diffusion pathway tortuosity. Methods to alleviate electrodeposited overlayer formation on the artificial opal templates for the fabrication of the porous 3D structures are also demonstrated. Such a 3D material is ideally suited as a cathode for lithium ion batteries, electrochromic devices, sensors and for applications requiring high surface area electrochemically active metal oxides.
机译:使用简单的电沉积工艺,使用VOSO4·χH2O水溶液和添加的乙醇,通过简单的电沉积工艺将三维五氧化二钒(V2O5)材料结构构建为反蛋白石(IOs)形式,将其制成人造蛋白石模板。将V2O5 IO的直接沉积与V2O5平面电沉积进行了比较,并证实了类似的进行性成核和生长机理。使用X射线晶体学,X射线光电子能谱,拉曼散射和扫描/透射电子显微镜对IO材料的化学和形态性质进行了深入检查。已证明电沉积是人造蛋白石的间隙空隙分数和离子扩散率的函数,离子扩散率可导致高质量,纯相的V2O5反蛋白石不受扩散路径曲折性的不利影响。还说明了减轻人造蛋白石模板上电沉积覆盖层形成的方法,以制造多孔3D结构。这种3D材料非常适合用作锂离子电池,电致变色器件,传感器以及需要高表面积电化学活性金属氧化物的应用的阴极。

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