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Materials development for intermediate-temperature solid oxide electrochemical devices

机译:中温固体氧化物电化学装置的材料开发

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摘要

One of the major challenges in developing electrochemical devices for energy generation has been the identification and development of materials with outstanding performance at reduced (intermediate) temperatures (500-700 °C), increasing the durability and lowering the cost of the device. A solid-state electrochemical cell is in outline a simple device consisting of three components: anode, electrolyte and cathode. The function of each component is critical to cell performance, and as interest in fuel cells and electrolysers has gathered pace, many materials have been evaluated as functional components of these cells. Typically, the requirement for new materials development has been the drive to lower operation temperature, overcoming sluggish reaction kinetics in existing materials. Novel materials for the functional components of both electrolysers and fuel cells are introduced, with emphasis placed on the air electrode and electrolyte, with the potential of new classes of materials discussed, including layered materials, defect fluorites and tetrahedrally coordinated phases. Furthermore, the opportunity presented by thin film deposition to characterize anisotropic transport in materials and develop devices based on thin films is discussed.
机译:开发用于产生能量的电化学装置的主要挑战之一是鉴定和开发在降低的(中间)温度(500-700°C)下具有出色性能的材料,增加耐用性并降低装置成本。固态电化学电池在总体上是一个简单的设备,由三个部分组成:阳极,电解质和阴极。每种成分的功能对于电池性能至关重要,并且随着人们对燃料电池和电解槽的兴趣日渐增加,许多材料已被评估为这些电池的功能成分。通常,开发新材料的要求是降低工作温度,以克服现有材料反应迟钝的动力。介绍了用于电解槽和燃料电池功能组件的新型材料,重点放在空气电极和电解质上,讨论了新型材料的潜力,包括层状材料,缺陷萤石和四面体配位相。此外,还讨论了薄膜沉积为表征材料中的各向异性传输和开发基于薄膜的器件提供了机会。

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