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通过原位椭偏仪提取的电致变色氧化钨涂层在电化学循环钠化过程中的形态和化学动力学。

Morphological and chemical dynamics upon electrochemical cyclic sodiation of electrochromic tungsten oxide coatings extracted by in situ ellipsometry.

作者信息

Zimmer Alexandre, Gilliot Mickaël, Broch Laurent, Boulanger Clotilde, Stein Nicolas, Horwat David

出版信息

Appl Opt. 2020 Apr 20;59(12):3766-3772. doi: 10.1364/AO.389063.

Abstract

The sodiation-desodiation process of sputtered amorphous electrochromic tungsten oxide coatings in an aqueous-based medium was simultaneously monitored over 99 cycles by cyclic voltammetry and in situ spectroscopic ellipsometry. This allowed extracting the evolution of optical and geometrical parameters upon cycling. The resulting electrochemical coloring-bleaching process was dynamically fitted in the 1.8-2.8 eV optical range with a four-phase model including a constrained spline parametrization of the dielectric function. This allows real time access to thickness, surface roughness, and dielectric function of ${{\rm Na}_x}!{{\rm WO}_3}$NaWO. The temporal evolution of the latter in the fully colored state was used to highlight the porosity extent of the probed coating of opened morphology. The designed spectroelectrochemical approach was applied to map the temporal evolution of the $\rm Na$Na content (${x}$x in ${{\rm Na}_x}!{{\rm WO}_3}$NaWO) during and between cycles, taking into account the intricate interplay between charge density, thickness, and electrolyte uptake.

摘要

通过循环伏安法和原位光谱椭偏仪,在99个循环中同时监测了溅射非晶态电致变色氧化钨涂层在水基介质中的 sodiation-desodiation 过程。这使得能够提取循环过程中光学和几何参数的演变。所得的电化学着色-漂白过程在1.8-2.8 eV光学范围内用一个四相模型进行动态拟合,该模型包括介电函数的约束样条参数化。这允许实时获取 ${{\rm Na}_x}!{{\rm WO}_3}$ 的厚度、表面粗糙度和介电函数。后者在完全着色状态下的时间演变被用于突出所探测的开放形态涂层的孔隙率程度。考虑到电荷密度、厚度和电解质吸收之间的复杂相互作用,所设计的光谱电化学方法被应用于绘制循环期间和循环之间 $\rm Na$ 含量(${{\rm Na}_x}!{{\rm WO}_3}$ 中的 ${x}$)的时间演变。

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