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Fabrication of an all solid-state electrochromic device using zirconium dioxide as an ion-conducting layer

机译:使用二氧化锆作为离子导电层的全固态电致变色器件的制造

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摘要

Zirconium dioxide (ZrO2) thin films were deposited onto glass substrates, indium fin oxide (ITO) coated glass substrates and nickel oxide (NiO) / ITO / glass structures by reactive radio frequency (RF) magnetron sputtering using a zirconium target at room temperature. The deposition power was held at 75 W and the influence of deposition pressure and film thickness on the properties of the ZrO2 films were investigated. Optical, electrochemical and electrochemical impedance spectroscopy measurements of the ZrO2 films were performed and the electrochromic behavior of a half-cell structure of ZrO2 / NiO / ITO / glass was investigated in a wide spectral range. The amount of inserted/extracted charges into/from each film during bleaching/coloring process were investigated in detail. The highest coloration efficiency (24.3 cm(2)/C) and optical modulation (42.8%) at a wavelength of 550 nm were found for a ZrO2 / NiO / ITO / glass structure having a ZrO2 film with a thickness of 100 nm, deposited at 4.00 Pa. Finally, a unique design of an all solid-state electrochromic device with a configuration of ITO / NiO / we lithiated ZrO2 / dry lithiated tungsten oxide (WO3) / ITO / glass was fabricated. The optical modulation of the device was 53% at 550 nm for the applied potentials of +/- 3 V.
机译:使用锆靶在室温下通过反应性射频(RF)磁控溅射将二氧化锆(ZrO2)薄膜沉积到玻璃基板,氧化铟锡(ITO)涂层的玻璃基板和氧化镍(NiO)/ ITO /玻璃结构上。沉积功率保持在75 W,研究了沉积压力和膜厚对ZrO2膜性能的影响。对ZrO2薄膜进行了光学,电化学和电化学阻抗谱测量,并在较宽的光谱范围内研究了ZrO2 / NiO / ITO /玻璃的半电池结构的电致变色行为。详细研究了在漂白/着色过程中从每个薄膜中插入/提取的电荷量。对于沉积了厚度为100 nm的ZrO2膜的ZrO2 / NiO / ITO /玻璃结构,发现在550nm波长处的最高着色效率(24.3 cm(2)/ C)和光学调制(42.8%)最后,以4.00 Pa的压力进行了设计。制造了具有ITO / NiO /我们锂化ZrO2 /干锂化氧化钨(WO3)/ ITO /玻璃构型的全固态电致变色器件的独特设计。对于+/- 3 V的施加电势,该器件在550 nm处的光调制率为53%。

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