首页> 外文会议>International Symposium on Solid Oxide Fuel Cells >Screen Printed Porous La_(0.20)Sr_(0.25)Ca_(0.45)TiO_3 Fuel Electrode Scaffold Microstructures: Optimisation of Interaction with Impregnated Catalysts for More Durable Performance
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Screen Printed Porous La_(0.20)Sr_(0.25)Ca_(0.45)TiO_3 Fuel Electrode Scaffold Microstructures: Optimisation of Interaction with Impregnated Catalysts for More Durable Performance

机译:丝网印刷多孔La_(0.20)Sr_(0.25)Ca_(0.45)TiO_3燃料电极支架微结构:优化与浸渍催化剂的相互作用以实现更持久的性能

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La_(0.20)Sr_(0.25)Ca_(0.45)TiO_3 (LSCT_(A-)) shows promise as a novel Solid Oxide Fuel Cell anode backbone material (to replace Ni-based cermets). Thick film ceramic processing techniques have been used as the primary method in controlling the characteristics of the fuel electrode (layer thickness, porosity, grain connectivity and the ultimate interaction with catalyst particles) in order to produce a microstructural architecture which has the potential to deliver higher electronic (and ionic) conductivity, improved current distribution and more durable performance in fuel cell testing. Results of preliminary studies into the ceramic processing of LSCT_(A-) are presented here.
机译:La_(0.20)Sr_(0.25)Ca_(0.45)TiO_3(LSCT_(A-))有望作为一种新型的固体氧化物燃料电池阳极骨架材料(替代镍基金属陶瓷)。厚膜陶瓷加工技术已被用作控制燃料电极特性(层厚度,孔隙率,晶粒连通性以及与催化剂颗粒的最终相互作用)的主要方法,以产生具有更高输出潜力的微观结构。电子(和离子)电导率,改善的电流分布以及在燃料电池测试中更持久的性能。此处介绍了对LSCT_(A-)陶瓷加工的初步研究结果。

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