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首页> 外文期刊>RSC Advances >Electrodeposition-based electrochromic devices with reversible three-state optical transformation by using titanium dioxide nanoparticle modified FTO electrode
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Electrodeposition-based electrochromic devices with reversible three-state optical transformation by using titanium dioxide nanoparticle modified FTO electrode

机译:采用二氧化钛纳米粒子改性FTO电极具有可逆三态光学变换的电沉积基电致变色装置

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Reversible electrodeposition-based electrochromic devices are highly promising for extensive applications owing to their facile and low-cost fabrication. Herein, a novel electrodeposition-based electrochromic device with reversible three-state optical transformation, i.e. transparent, mirror, and black, was fabricated by introducing a fluorine-doped tin oxide (FTO) electrode modified with commonly available and inexpensive titanium dioxide (TiO _(2) ) nanoparticles. Typically, the fabricating strategy mainly involved three procedures, namely obtaining a stable dispersion of TiO _(2) nanoparticles by milling, achieving a surface modification of the FTO electrode with TiO _(2) nanoparticles by spin-coating and sintering, and assembling the device by sandwiching gel electrolyte between the modified FTO electrode and a flat FTO electrode. By applying different voltages for a short while, this transparent smart device can be immediately switched to black (+2.5 V/20 s) or mirror (?2.5 V/20 s) state by depositing Ag on the surface of the modified or unmodified FTO electrode respectively. There is below 1% transmittance in the black state and over 80% reflectance in the mirror state for the device. By changing the surface structure of the TiO _(2) modified FTO electrode, the optical properties of the device in different states can be controlled effectively. Moreover, the optical transformation exhibited good stability over 1500 cycles of testing.
机译:由于其容易和低成本的制造,可逆电沉积基电致变色器件具有广泛的应用。这里,通过引入与常用和廉价二氧化钛(TiO _)引入氟掺杂的氧化锡(FTO)电极(TiO _ (2))纳米颗粒。通常,制造策略主要涉及三种方法,即通过研磨获得TiO _(2)纳米颗粒的稳定分散,通过旋涂和烧结,使用TiO _(2)纳米颗粒来实现FTO电极的表面改性,并组装通过在改进的FTO电极和扁平FTO电极之间夹在凝胶电解质中的装置。通过施加不同的电压,通过在修改或未修饰的FTO的表面上沉积AG,可以立即切换到黑色(+2.5V / 20s)或镜子(Δ2.5V/ 20s)状态电极分别。黑色状态下透射率以下低于1%,对设备的镜子状态下有超过80%的反射率。通过改变TiO _(2)修改的FTO电极的表面结构,可以有效地控制不同状态下的装置的光学性质。此外,光学变换表现出超过1500个测试循环的良好稳定性。

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