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Electro-responsivity in electrolyte-free and solution processed Bragg stacks

机译:在无电解质和溶液中的电响应率加工布拉格堆

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Achieving an active manipulation of colours has huge implications in optoelectronics, as colour engineering can be exploited in a number of applications, ranging from display to lightning. In the last decade, the synergy of the highly pure colours of 1D photonic crystals, also known as Bragg stacks, with electro-tunable materials have been proposed as an interesting route to attain such a technologically relevant effect. However, recent works rely on the use of liquid electrolytes, which can pose issues in terms of chemical and environmental stability. Here, we report on the proof-of-concept of an electrolyte free and solution-processed electro-responsive Bragg stack. We integrate an electro-responsive plasmonic metal oxide, namely indium tin oxide, in a 1D photonic crystal structure made of alternating layers of ITO and TiO(2)nanoparticles. In such a device, we observed a maximum of 23 nm blue-shift upon the application of an external bias (10 V). Our data suggest that electrochromism can be attained in all-solid state systems by combining a judicious selection of the constituent materials with device architecture optimisation.
机译:实现颜色的积极操纵对光电子有巨大影响,因为颜色工程可以在许多应用中利用,从显示到闪电。在过去的十年中,已经提出了一种具有电动可电解材料的1D光子晶体的高纯色颜色的协同作用,其具有电动可电解材料作为实现这种技术相关的效果的有趣路线。然而,最近的作品依赖于使用液体电解质,这可以在化学和环境稳定方面造成问题。在这里,我们报告了电解质自由和溶液加工的电响应式布拉格堆的概念概念。我们在由ITO和TiO(2)纳米粒子的交替层制成的1D光子晶体结构中,整合电响应性等离子体氧化物,即氧化铟锡氧化铟锡。在这种装置中,在应用外部偏压(10V)时,我们观察到最多23nm的蓝色移位。我们的数据表明,通过将组成材料与器件架构优化的明智选项相结合,可以在全固态系统中获得电致变色。

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