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Measuring oxygen diffusion and oxygen surface exchange by conductivity relaxation

机译:通过电导率松弛测量氧气扩散和氧气表面交换

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For materials that are predominantly electronic conductors and possess a materials property that changes with oxygen partial pressure then a 'relaxation' technique may be used to measure oxygen transport behaviour. Perhaps the simplest to implement is electrical conductivity relaxation. For many mixed conducting materials a change in the oxygen partial pressure will result in a corresponding change in the electrical conductivity of the material due to, primarily, a change in the concentration of charge carriers. If the ionic conductivity of a material is significantly less than its electronic conductivity then the time for this change to propagate throughout the material is almost exclusively controlled by the movement of ionic species. This change or 'relaxation' can be modelled and oxygen diffusion coefficients and surface exchange coefficients can be extracted from the data. This paper will discuss the measurement of oxygen transport in mixed-conducting ceramic oxides using the conductivity relaxation technique. Emphasis will be placed on the analysis of the 'relaxation' profile and the problems associated with determining oxygen diffusion coefficients and oxygen surface exchange coefficients simultaneously.. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 6]
机译:对于主要是电子导体且具有随氧气分压而变化的材料特性的材料,则可以使用“松弛”技术来测量氧气的传输行为。可能最容易实现的是电导率松弛。对于许多混合导电材料,主要由于电荷载流子浓度的变化,氧分压的变化将导致材料电导率的相应变化。如果材料的离子电导率显着小于其电子电导率,则此变化在整个材料中传播的时间几乎完全由离子种类的移动控制。可以对这种变化或“松弛”进行建模,并可以从数据中提取氧气扩散系数和表面交换系数。本文将讨论使用电导率弛豫技术测量混合导电陶瓷氧化物中的氧传输。将重点放在“松弛”曲线的分析以及与同时确定氧扩散系数和氧表面交换系数有关的问题上。(C)2000 Elsevier Science B.V.保留所有权利。 [参考:6]

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