化工学报 ›› 2022, Vol. 73 ›› Issue (8): 3708-3719.DOI: 10.11949/0438-1157.20220264

• 能源和环境工程 • 上一篇    下一篇

原位析出纳米合金的PrBaFe2O6-δ 基阳极构筑及其在固体碳燃料电池中的应用研究

艾承燚(), 乔金硕(), 王振华, 孙旺, 孙克宁   

  1. 北京理工大学化学与化工学院,化学电源与绿色催化北京市重点实验室,北京 100084
  • 收稿日期:2022-03-01 修回日期:2022-07-09 出版日期:2022-08-05 发布日期:2022-09-06
  • 通讯作者: 乔金硕
  • 作者简介:艾承燚(1997—),男,硕士研究生,18811377836@163.com
  • 基金资助:
    国家自然科学基金项目(22078022)

Investigation on PrBaFe2O6-δ anode material with in-situ FeNi nanoparticle in direct carbon solid oxide fuel cell

Chengyi AI(), Jinshuo QIAO(), Zhenhuan WANG, Wang SUN, Kening SUN   

  1. Laboratory of Chemical Power Source and Green Catalysis, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing 100084, China
  • Received:2022-03-01 Revised:2022-07-09 Online:2022-08-05 Published:2022-09-06
  • Contact: Jinshuo QIAO

摘要:

开发高性能阳极材料对于固体碳为燃料的固体氧化物燃料电池(solid oxide fuel cells, SOFCs)的发展意义重大。本文研究了原位析出Fe以及FeNi合金的PrBaFe2O6-δ (PBF)基层状双钙钛矿材料在SOFCs中的应用。通过溶胶-凝胶法制备了Ni掺杂的 (PrBa)0.95Fe1.7Ti0.2Ni0.1O6-δ (PBFTN)阳极材料。XRD表明合成的材料呈现钙钛矿结构且在阳极还原性气氛下保持稳定。XRD、SEM、TEM、XPS结果表明在还原性气氛下材料表面析出大量均匀分布的纳米金属颗粒。当采用纯的纳米活性炭为燃料时,电解质支撑型的以PBFTN为阳极的单电池在800℃下实现了698 mW·cm-2的最大功率密度,性能十分优异,表明其是一种具有潜力的SOFCs阳极材料。

关键词: 电化学, 燃料电池, 原位析出, 纳米颗粒, 阳极材料, 钙钛矿

Abstract:

The development of high-performance anode materials is of great significance for the development of solid oxide fuel cells (SOFCs) fueled by solid carbon. In this paper, the application of PrBaFe2O6-δ (PBF)-based layered double perovskite materials in SOFCs with in-situ precipitation of Fe and FeNi alloys was investigated. Ni-doped (PrBa)0.95Fe1.7Ti0.2Ni0.1O6-δ (PBFTN) anode material was prepared by sol-gel method. XRD showed that the as-synthesized material exhibited a perovskite structure and remained stable in an anodic reducing atmosphere. XRD, SEM, TEM, and XPS results showed that a large number of uniformly distributed nano-metal particles are precipitated on the surface of the material under reducing atmosphere, which is crucial for improving the output performance of the cell. When pure nano activated carbon was used as fuel, the electrolyte-supported single cell with PBFTN as anode achieved a maximum power density of 698 mW·cm-2 at 800℃, which is excellent, indicating that it is a potential SOFCs anode material.

Key words: electrochemistry, fuel cells, in-situ precipitation, nanoparticles, anode materials, perovskites

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