论文标题

无电解质和溶液处理的Bragg堆栈中的电色素

Electrochromism in Electrolyte-Free and Solution Processed Bragg Stacks

论文作者

Moscardi, Liliana, Paternò, Giuseppe M., Chiasera, Alessandro, Sorrentino, Roberto, Marangi, Fabio, Kriegel, Ilka, Lanzani, Guglielmo, Scotognella, Francesco

论文摘要

实现对颜色的积极操作对光电学具有很大的影响,因为可以在许多应用中利用颜色工程,从显示到闪电。在过去的十年中,已经提出了具有电调材料的一维光子晶体的高度纯色的协同作用,这是一种有趣的途径,以实现这种具有技术相关的效果。但是,最近的工作依赖于液体电解质的使用,这可能会在化学和环境稳定性方面构成问题。在这里,我们报告了无电解质和溶液处理的电致色素bragg堆栈的概念证明。我们在由ITO和TiO2纳米颗粒交替的层制成的一维光子晶体结构中整合了电响应等离子金属氧化物,即氧化锡锡。在这样的设备中,我们在应用外部偏置时观察到15 nm蓝移(5 V),我们将其归因于在金属氧化物/介电界面和整个多孔结构中流动的电流中引起的ITO电荷密度的增加。我们的数据表明,通过将组成材料的明智选择与设备体系结构优化相结合,可以在全稳态的系统中获得电化性。

Achieving an active manipulation of colours has huge implications in optoelectronics, as colours 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 electrochromic 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 TiO2 nanoparticles. In such a device we observed 15 nm blue-shift upon application of an external bias (5 V), an effect that we attribute to the increase of ITO charge density arising from the capacitive charging at the metal oxide/dielectric interface and from the current flowing throughout the porous structure. 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.

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