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Intercalation studies on electron beam evaporated MoO3 films for electrochemical devices

机译:电子束蒸发MoO3薄膜在电化学装置中的插层研究

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摘要

Now-a-days a large number of extensive research has been focused on electrochromic oxide thin films, owing to their potential applications in smart windows, low cost materials in filters, low cost electrochemical devices and also in solar cell windows. Among the varieties of electrochromic transition metal oxides, the molybdenum oxide (MoO3) and tungsten oxide (WO3), form a group of predominant ionic solids that exhibit electrochromic effect. The electrochromic response of these materials are aesthetically superior to many other electrochromic materials, because W03 and MoO3 absorb light more intensely and uniformly. In the present case, we have discussed about the electrochromic behaviour of electron beam evaporated MoO3 films. Moreover, the MoO3 film can also be used as a potential electro-active material for high energy density secondary lithium ion batteries; because it exhibits two-dimensional van der Waals bonded layered structure in orthorhombic phase. The films were prepared by evaporating the palletized MoO3 powder under the vacuum of the order of 1 X 10(-5) mbar. The electrochemical behaviour of the films was studied by intercalating/deintercalating the K+ ions from KCl electrolyte solutions using three electrode electrochemical cell by the cyclic-voltammetry technique. The studies were carried out for different scanning rates. The films have changed their colour as dark blue in the colouration. process and returns to the original colour while the bleaching process. The diffusion coefficient values (D) of the intercalated/deintercalated films were calculated by Randle's Servcik equation. The optical transparency of the coloured and bleached films was studied by the UV-Vis-NIR spectrophotometer. The change in bonding assignment of the intercalated MoO3 films was studied by FTIR spectroscopic analysis. A feasible study on the effect of substrate temperatures and annealing temperatures on optical density (OD) and colouration efficiency of the films were discussed and explored their performance for the low cost electrochemical devices. (c) 2006 Elsevier B.V. All rights reserved.
机译:如今,由于电致变色氧化物薄膜在智能窗户,过滤器中的低成本材料,低成本电化学装置以及太阳能电池窗户中的潜在应用,因此大量的研究集中在电致变色氧化物薄膜上。在各种电致变色过渡金属氧化物中,氧化钼(MoO3)和氧化钨(WO3)形成了一组主要的离子固体,这些离子固体表现出电致变色作用。这些材料的电致变色响应在美学上优于许多其他电致变色材料,因为WO 3和MoO 3吸收更强烈且更均匀。在当前情况下,我们讨论了电子束蒸发MoO3薄膜的电致变色行为。此外,MoO 3膜还可以用作高能量密度二次锂离子电池的潜在电活性材料。因为它在正交相中表现出二维范德华键合层状结构。通过在约1 X 10(-5)mbar的真空下蒸发托盘化的MoO3粉末来制备薄膜。通过使用三电极电化学电池通过循环伏安法对KCl电解质溶液中的K +离子进行嵌入/去嵌入,研究了膜的电化学行为。对不同的扫描速率进行了研究。影片的颜色已更改为深蓝色。漂白过程中恢复原色。通过Randle的Servcik方程式计算出插层/脱层膜的扩散系数值(D)。通过UV-Vis-NIR分光光度计研究了着色和漂白的膜的光学透明性。通过FTIR光谱分析研究了嵌入的MoO 3膜的键分配的变化。讨论了关于衬底温度和退火温度对薄膜的光密度(OD)和着色效率的影响的可行研究,并探讨了其在低成本电化学装置中的性能。 (c)2006 Elsevier B.V.保留所有权利。

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