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Novel materials for solid oxide fuel cell technologies: A literature review

机译:用于固体氧化物燃料电池技术的新型材料:文献综述

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This study aims to review novel materials for solid oxide fuel cell (SOFC) applications covered in literature. Thence, it was found that current SOFC operating conditions lead to issues, such as carbon surface deposition, sulfur poisoning and quick component degradation at high temperatures, which make it unsuitable for a few applications. Therefore, many researches are focused on cell performance enhancement through replacing the materials being used in order to improve properties and/or reduce operating temperatures. Most modifications in the anode aim to avoid some issues concerning conventionally used Ni-based materials, such as carbon deposition and sulfur poisoning, besides enhancing catalytic activity, once this component is directly exposed to the fuel. It was also found literature about the cathode with the aim of developing a material with enhanced properties in a wider temperature range, which has been compared to the currently used one: LSM perovsldte (La1-xSrxMnO3). Novel electrolyte materials can have ionic or protonic conductivity, thus performance degradation must be avoided at several operating conditions. In order to enhance its electrochemical performance, different materials for electrodes (cathode and anode) and electrolytes have been assessed herein. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项研究旨在审查文献中涉及的用于固体氧化物燃料电池(SOFC)应用的新型材料。因此,发现当前的SOFC操作条件会导致问题,例如碳表面沉积,硫中毒以及高温下的快速成分降解,这使其不适用于某些应用。因此,许多研究集中在通过代替所使用的材料以提高性能和/或降低工作温度来提高电池性能。阳极中的大多数修改旨在避免与常规使用的镍基材料有关的一些问题,例如碳沉积和硫中毒,除了增强催化活性外,一旦该组分直接暴露于燃料中。还发现了有关阴极的文献,目的是开发一种在更宽的温度范围内具有增强性能的材料,该材料已与当前使用的一种材料:LSM perovsldte(La1-xSrxMnO3)进行了比较。新型电解质材料可以具有离子或质子传导性,因此必须在几种操作条件下避免性能下降。为了增强其电化学性能,本文已经评估了用于电极(阴极和阳极)和电解质的不同材料。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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