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首页> 外文期刊>Journal of Power Sources >Mechanical properties and electrochemical characterisation of extruded doped cerium oxide for use as an electrolyte for solid oxide fuel cells
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Mechanical properties and electrochemical characterisation of extruded doped cerium oxide for use as an electrolyte for solid oxide fuel cells

机译:用作固体氧化物燃料电池电解质的挤出掺杂氧化铈的机械性能和电化学特性

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摘要

Doped cerium oxide is a promising electrolyte for use in a medium-temperature solid oxide fuel cell (SOFC), due to its high ionic conductivity at low temperatures. A colloidal processing route has been undertaken to prepare slurries from very fine doped-cerium oxide. The dried slurry is extruded into rods and tubes and the room temperature modulus of rupture is then measured. It is shown that the material could attain a modulus in excess of 220 MPa for (CeO_2)_(0.8)(GdO_(1.5))_(0.2), which is considerably greater than values obtained using traditional routes. A preliminary investigation is made of the electrochemical properties of single cells fabricated from the extruded doped-ceria tubes. At 600℃, a maximum power output of approximately 38 mW cm~(-2) is realised.
机译:掺杂的氧化铈由于在低温下具有高离子电导率,因此是用于中温固体氧化物燃料电池(SOFC)的有希望的电解质。已经采取了胶体加工路线,以从非常细的掺杂二氧化铈制备浆料。将干燥的浆料挤出成棒和管,然后测量室温下的断裂模量。结果表明,对于(CeO_2)_(0.8)(GdO_(1.5))_(0.2),该材料可获得的模量超过220 MPa,这比使用传统方法获得的值大得多。对由挤出的掺杂二氧化铈管制成的单电池的电化学性能进行了初步研究。在600℃时,最大输出功率约为38 mW cm〜(-2)。

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