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Bicuvox.1-matrix Composite Electrolyte With Yttria-stabilized Zirconia As An Inert Phase: Sem Evaluation Of The Chemical Stability Under Hydrogen Atmosphere.

机译:以氧化钇稳定的氧化锆为惰性相的Bicuvox.1-matrix复合电解质:Sem评价氢气氛下的化学稳定性。

摘要

The purpose of this study is to evaluate the efficacy of yttria-stabilized zirconia (3Y-TZP) as an inert phase to prevent the decomposition of Bi2 V0.9 Cu0.1 O5.5 -δ (BICUVOX.1) electrolyte under reducing atmosphere. A post-mortem scanning electron microscopy (SEM) study was performed after chemical stability tests under hydrogen-rich atmosphere using a Sieverts-type apparatus. SEM results showed that BICUVOX.1 decomposition starts under a hydrogen pressure of 19.7 atm at 300°C, even in the case of the composite containing 3Y-TZP. The microstructure of BICUVOX.1 after decomposition was observed to be composed of microspheres ranging from 10 to 100 µm formed primarily of metallic bismuth. In the composite, in addition to microspheres, the microstructure contained bismuth fibers growth from the grain area of the BICUVOX.1 matrix. Despite significant surface morphological modifications, the grain-boundary-arranged 3Y-TZP particles in a BICUVOX.1-matrix composite did not result in enhanced chemical stability.
机译:这项研究的目的是评估氧化钇稳定的氧化锆(3Y-TZP)作为惰性相防止在还原气氛下防止Bi2 V0.9 Cu0.1 O5.5-δ(BICUVOX.1)电解质分解的功效。 。在使用Sieverts型设备在富氢气氛下进行化学稳定性测试后,进行了事后扫描电子显微镜(SEM)研究。 SEM结果表明,即使在含有3Y-TZP的复合材料中,BICUVOX.1的分解也在300°C的19.7 1atm的氢气压力下开始。观察到BICUVOX.1分解后的微观结构由主要由金属铋形成的10至100μm的微球组成。在复合材料中,除了微球以外,微观结构还包含铋纤维从BICUVOX.1基质的晶粒区域开始生长。尽管表面形态发生了显着变化,但BICUVOX.1-基质复合材料中晶界排列的3Y-TZP颗粒并未提高化学稳定性。

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