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CeO-YO体系中平面固体电解质的微绘图仪打印

Microplotter printing of planar solid electrolytes in the CeO-YO system.

作者信息

Simonenko Tatiana L, Simonenko Nikolay P, Gorobtsov Philipp Yu, Vlasov Ivan S, Solovey Valentin R, Shelaev Artem V, Simonenko Elizaveta P, Glumov Oleg V, Melnikova Natalia A, Kozodaev Maxim G, Markeev Andrey M, Lizunova Anna A, Volkov Ivan A, Sevastyanov Vladimir G, Kuznetsov Nikolay T

机构信息

Kurnakov Institute of General and Inorganic Chemistry of the Russian Academy of Sciences, 31 Leninsky pr., Moscow 119991, Russia.

Kurnakov Institute of General and Inorganic Chemistry of the Russian Academy of Sciences, 31 Leninsky pr., Moscow 119991, Russia.

出版信息

J Colloid Interface Sci. 2021 Apr 15;588:209-220. doi: 10.1016/j.jcis.2020.12.052. Epub 2020 Dec 19.

Abstract

The formation process for planar solid electrolytes in the CeO-YO system has been studied using efficient, high-performance, high-resolution microplotter printing technology, using functional ink based on nanopowders (the average size of crystallites was 12-15 nm) of a similar composition obtained by programmed coprecipitation of metal hydroxides. The dependence of the microstructure of the oxide nanoparticles obtained and their crystal structure on yttrium concentration has been studied using a wide range of methods. According to X-ray diffraction (XRD), the nanopowders and coatings produced are single-phase, with a cubic crystal structure of the fluorite type, and the electronic state and content of cerium and yttrium in the printed coatings have been determined using X-ray photoelectron spectroscopy (XPS). The results of scanning electron (SEM) and atomic force microscopy (AFM) have shown that the coatings produced are homogeneous, they do not contain defects in the form of fractures and the height difference over an area of 1 µm is 30-45 nm. The local electrophysical characteristics of the oxide coatings produced (the work function of the coating surface, capacitance values, maps of the surface potential and capacitive contrast distribution over the surface) have been studied using Kelvin-probe force microscopy (KPFM) and scanning capacitive microscopy (SCM). Using impedance spectroscopy, the dependence of the electrophysical characteristics of printed planar solid electrolytes in the CeO-YO system on yttrium content has been determined and the prospects of the technology developed for the manufacture of modern, intermediate-temperature, solid oxide fuel cells have been demonstrated.

摘要

采用高效、高性能、高分辨率微绘图仪印刷技术,使用基于通过金属氢氧化物程序共沉淀获得的类似组成的纳米粉末(微晶平均尺寸为12 - 15纳米)的功能墨水,研究了CeO - YO体系中平面固体电解质的形成过程。使用多种方法研究了所得氧化物纳米颗粒的微观结构及其晶体结构对钇浓度的依赖性。根据X射线衍射(XRD),所制备的纳米粉末和涂层为单相,具有萤石型立方晶体结构,并使用X射线光电子能谱(XPS)确定了印刷涂层中铈和钇的电子态及含量。扫描电子显微镜(SEM)和原子力显微镜(AFM)的结果表明,所制备的涂层是均匀的,不存在裂缝形式的缺陷,在1微米区域内的高度差为30 - 45纳米。使用开尔文探针力显微镜(KPFM)和扫描电容显微镜(SCM)研究了所制备的氧化物涂层的局部电物理特性(涂层表面的功函数、电容值、表面电位图和表面电容对比度分布)。通过阻抗谱,确定了CeO - YO体系中印刷平面固体电解质的电物理特性对钇含量的依赖性,并展示了所开发技术用于制造现代中温固体氧化物燃料电池的前景。

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