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Youquan Mi

Researcher at Hubei University

Publications -  8
Citations -  336

Youquan Mi is an academic researcher from Hubei University. The author has contributed to research in topics: Electrolyte & Oxide. The author has an hindex of 5, co-authored 8 publications receiving 193 citations.

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Shaping triple-conducting semiconductor BaCo 0.4 Fe 0.4 Zr 0.1 Y 0.1 O 3-δ into an electrolyte for low-temperature solid oxide fuel cells

TL;DR: The authors incorporate a mixed ion-electron semiconductor into another semiconductor to form a p-n junction to suppress electron conduction and enhance ion conduction, leading to a low-temperature electrolyte.
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An ionic conductor Ce0.8Sm0.2O2_(delta) (SDC) and semiconductor Sm0.5Sr0.5CoO3 (SSC) composite for high performance electrolyte-free fuel cell

TL;DR: An advanced electrolyte-free fuel cell (EFFC) was developed in this paper, which consists of a composite layer made from a mixture of ionic conductor (Ce0.8Sm 0.2O2), SDC and semiconductor (Sm0.5Sr 0.5CoO3, SSC...
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Low-temperature fuel cells using a composite of redox-stable perovskite oxide La 0.7 Sr 0.3 Cr 0.5 Fe 0.5 O 3-δ and ionic conductor

TL;DR: In this paper, a solid oxide fuel cell (SOFC) incorporating the semiconductor with the ionic conductor to replace the traditional electrolyte layer with improved performance has been reported, where the redox stable electrode material La 0.7 Sr 0.3 Cr 0.5 O 3-δ (LSCrF) can be considered as a good candidate for such configuration.
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The electrolyte-layer free fuel cell using a semiconductor-ionic Sr2Fe1.5Mo0.5O6-delta - Ce0.8Sm0.2O2-delta composite functional membrane

TL;DR: In this paper, double Perovskite Sr 2 Fe 1.5 Mo 0.5 O 6-δ (SFM) was used as the cathode material for solid oxide fuel cell (SOFC) in a comprehensive study.
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La0.1SrxCa0.9-xMnO3-δ -Sm0.2Ce0.8O1.9 composite material for novel low temperature solid oxide fuel cells

TL;DR: Lowering the operating temperature of the solid oxide fuel cells (SOFCs) is one of the world R&D tendencies as mentioned in this paper, and exploring novel electrolytes possessing high ionic conductivity at low temperature b...