FTO暗化率作为筛选薄固体电解质中锂离子传导的定性、高通量测绘方法

IF 3.784 3区 化学 Q1 Chemistry
Shay Tirosh*, Niv Aloni, Simcha Meir, Arie Zaban, David Cahen, Diana Golodnitsky*
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引用次数: 4

摘要

我们提出了一种高通量(组合)方法,通过映射锂离子传导的光学效应来筛选陶瓷薄膜作为锂离子导体。该方法定性、快速、简单,提供了锂离子通过薄膜不同部分的平面(XY)电导率图。FTO变暗效应是一种光电化学效应,它依赖于FTO(掺f氧化锡)衬底的变暗,所研究的薄膜沉积在其上。FTO的颜色变化速率反映了锂离子通过薄膜的迁移速率。通过测试两种模型系统,一种是均匀成分和厚度变化的Li-La-S-O薄膜,另一种是厚度和横向成分变化的Li-La-P-O薄膜,验证了该方法的有效性。由光透射得到的变暗率与薄膜厚度成反比。暗率图可以与阻抗测量得到的电阻图进行比较,表明只测量了Li导通。我们讨论了区分纯离子电导率区域和混合电导率区域所需的条件,变暗效应的可逆性和伪影。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

FTO Darkening Rate as a Qualitative, High-Throughput Mapping Method for Screening Li-Ionic Conduction in Thin Solid Electrolytes

FTO Darkening Rate as a Qualitative, High-Throughput Mapping Method for Screening Li-Ionic Conduction in Thin Solid Electrolytes

We present a high-throughput (combinatorial) method to screen thin ceramic films as Li-ion conductors by mapping an optical effect of Li-ion conduction. The method, while qualitative, is fast and simple to implement, provides a planar (XY) map of Li-ion conductivity through different parts of the film. The effect, FTO darkening, is an optoelectrochemical one that relies on darkening of the FTO (F-doped tin oxide) substrate, onto which the investigated film is deposited. The rate of color change of the FTO reflects the rate of Li-ion migration through the film. The method is validated by testing two model systems, a Li–La–S–O film with uniform composition and varying thickness, and a Li–La–P–O film with varying thickness and lateral composition. The darkening rate, obtained from optical transmission, correlates linearly with inverse film thickness. The darkening rate map can be compared with a resistance map obtained by impedance measurements, showing that only Li conduction is measured. We discuss the conditions required to distinguish between areas with pure ion conductivity and those with mixed conductivity, the reversibility of the darkening effect and artifacts.

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来源期刊
ACS Combinatorial Science
ACS Combinatorial Science CHEMISTRY, APPLIED-CHEMISTRY, MEDICINAL
自引率
0.00%
发文量
0
审稿时长
1 months
期刊介绍: The Journal of Combinatorial Chemistry has been relaunched as ACS Combinatorial Science under the leadership of new Editor-in-Chief M.G. Finn of The Scripps Research Institute. The journal features an expanded scope and will build upon the legacy of the Journal of Combinatorial Chemistry, a highly cited leader in the field.
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