A review on new cobalt-free cathode materials for reversible solid oxide fuel cells

IF 0.7 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of metals, materials and minerals Pub Date : 2023-08-08 DOI:10.55713/jmmm.v33i3.1654
S. Akkurt, C. Sındıraç, Tuğçe ÖZMEN EGESOY, E. Ergen
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Abstract

The exponential growth in the requirement of fuel cells and batteries leads to increased demand for cobalt due to its common use in high-performance Li-ion batteries and high-temperature fuel cells/electrolyzers. This sharp increment in demand raises concern about the availability of limited reserves of cobalt which can impact the price of cobalt. Moreover, the geographic limitations of cobalt resources may endanger the whole supply chain. In addition to all those, huge moral issues of cobalt mining are also another problem. Hence, leading battery, fuel cells and electrolyzer manufacturers are looking for sustainable alternatives to reduce cobalt dependency. A more specific limitation is shown in Solid Oxide Fuel Cells (SOFCs) cathode materials that contain cobalt. Incompatibilities have already been observed between the cathode materials containing cobalt and the electrolytes in terms of the thermal expansion coefficient mismatch during the transition of the operating temperature from high to low. An advantage of low operating temperatures is the reduction of material costs compared to high temperature. Increasing the electrochemical performance of the cell and eliminating thermal expansion coefficient difference problems are in concert aimed at the development of cobalt-free cathode materials. Therefore, cobalt-free cathode materials are vital for the sustainability of SOFCs and green transition of the energy sector since they can be used as cathode and anode material in symmetrical SOFCs which is also known as reversible SOFC (RSOFC). In this review, we comprehensively summarize the recent advances of cobalt-free perovskite cathode materials for intermediate temperature RSOFCs.
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可逆固体氧化物燃料电池新型无钴正极材料研究进展
由于钴在高性能锂离子电池和高温燃料电池/电解槽中的普遍应用,燃料电池和电池需求的指数增长导致对钴的需求增加。需求的急剧增长引发了人们对钴储量有限的担忧,这可能会影响钴的价格。此外,钴资源的地理限制可能危及整个供应链。除此之外,钴矿开采的巨大道德问题也是另一个问题。因此,领先的电池、燃料电池和电解槽制造商正在寻找可持续的替代品,以减少对钴的依赖。在含有钴的固体氧化物燃料电池(sofc)正极材料中显示出更具体的限制。在工作温度从高到低的转变过程中,已经观察到含有钴的阴极材料与电解质之间的不相容,即热膨胀系数不匹配。与高温相比,低工作温度的优点是降低了材料成本。提高电池的电化学性能和消除热膨胀系数差异问题是发展无钴正极材料的共同目标。因此,无钴阴极材料对于SOFC的可持续性和能源部门的绿色转型至关重要,因为它们可以用作对称SOFC的阴极和阳极材料,也称为可逆SOFC (RSOFC)。本文综述了中温RSOFCs用无钴钙钛矿正极材料的研究进展。
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来源期刊
Journal of metals, materials and minerals
Journal of metals, materials and minerals MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
1.40
自引率
11.10%
发文量
0
期刊介绍: Journal of Metals, Materials and Minerals (JMMM) is a double-blind peer-reviewed international journal published 4 issues per year (starting from 2019), in March, June, September, and December, aims at disseminating advanced knowledge in the fields to academia, professionals and industrialists. JMMM publishes original research articles as well as review articles related to research and development in science, technology and engineering of metals, materials and minerals, including composite & hybrid materials, concrete and cement-based systems, ceramics, glass, refractory, semiconductors, polymeric & polymer-based materials, conventional & technical textiles, nanomaterials, thin films, biomaterials, and functional materials.
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