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Dive into the research topics where Cuijuan Zhang is active.

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Featured researches published by Cuijuan Zhang.


Journal of Materials Chemistry | 2012

A novel cobalt-free cathode material for proton-conducting solid oxide fuel cells

Cuijuan Zhang; Hailei Zhao

Developing a tailored cathode is of great importance for the improvement of proton-conducting solid oxide fuel cell (SOFC-H) performance. In this work, a novel cobalt-free cathode BaCe0.40Sm0.20Fe0.40O3−δ was designed for use in a SOFC-H. It was composed of homogeneously distributed BaCe1−x(Sm/Fe)xO3−δ and BaFe1−y(Sm/Ce)yO3−δ, which were synthesized by a simple in situ method, eliminating the separate synthesis and the mechanical mixing processes for the conventional composite materials. The BaCe0.40Sm0.20Fe0.40O3−δ cathode exhibited protonic, oxygen-ionic, and electronic conduction simultaneously in wet air, expanding the triple phase boundaries to the whole cathode. The symmetrical cell tests with BaCe0.40Sm0.20Fe0.40O3−δ as electrodes showed that the diffusion of O−ad and reduction of O−TPB were the rate limiting steps in wet air. The power density of the anode-supported single cell with Ni–BaCe0.80Sm0.20O3−δ (580 μm) anode, BaCe0.80Sm0.20O3−δ (70 μm) electrolyte and BaCe0.40Sm0.20Fe0.40O3−δ (53 μm) cathode was 194.0, 169.2, and 137.1 mW cm−2 at 750, 710, and 650 °C, respectively. These results are encouraging considering the cobalt-free nature and rather low electrical conductivity of the cathode material. The BaCe0.40Sm0.20Fe0.40O3−δ material demonstrated excellent catalytic activity towards the reactions on the cathode. Accordingly, the BaCe0.40Sm0.20Fe0.40O3−δ material can be a promising cathode for SOFC-H.


International Journal of Hydrogen Energy | 2009

Electrical conduction behavior of La, Co co-doped SrTiO3 perovskite as anode material for solid oxide fuel cells

Xue Li; Hailei Zhao; Nansheng Xu; Xiong Zhou; Cuijuan Zhang; Ning Chen


Journal of Materials Processing Technology | 2009

Modified aging process for silica aerogel

Fang He; Hailei Zhao; Xuanhui Qu; Cuijuan Zhang; Weihua Qiu


International Journal of Hydrogen Energy | 2009

Influence of ZnO addition on the properties of high temperature proton conductor Ba1.03Ce0.5Zr0.4Y0.1O3−δ synthesized via citrate–nitrate method

Cuijuan Zhang; Hailei Zhao; Nansheng Xu; Xue Li; Ning Chen


Solid State Ionics | 2009

Electrical properties of yttrium doped strontium titanate with A-site deficiency as potential anode materials for solid oxide fuel cells

Hailei Zhao; Feng Gao; Xue Li; Cuijuan Zhang; Yueqing Zhao


International Journal of Hydrogen Energy | 2011

Electrical conduction behavior of proton conductor BaCe1-xSmxO3-δ in the intermediate temperature range

Cuijuan Zhang; Hailei Zhao; Shaoyan Zhai


Solid State Ionics | 2010

Electrical conduction behavior of Sr substituted proton conductor Ba1 − xSrxCe0.9Nd0.1O3 − δ

Cuijuan Zhang; Hailei Zhao


Solid State Ionics | 2012

Influence of In content on the electrical conduction behavior of Sm- and In-co-doped proton conductor BaCe0.80-xSm0.20InxO3-δ

Cuijuan Zhang; Hailei Zhao


International Journal of Hydrogen Energy | 2013

Electrical conductivity and cell performance of La0.3Sr0.7Ti1−xCrxO3−δ perovskite oxides used as anode and interconnect material for SOFCs

Zhihong Du; Hailei Zhao; Xiong Zhou; Zhixiang Xie; Cuijuan Zhang


International Journal of Hydrogen Energy | 2015

Electrochemical properties of BaZr0.1Ce0.7Y0.1Yb0.1O3 − δ-Nd1.95NiO4 + δ composite cathode for protonic ceramic fuel cells

Chunyang Yang; Xin-Xin Zhang; Hailei Zhao; Yongna Shen; Zhihong Du; Cuijuan Zhang

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Hailei Zhao

University of Science and Technology Beijing

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Xue Li

University of South Carolina

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Feng Gao

University of Science and Technology Beijing

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Ning Chen

University of Science and Technology Beijing

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Xiong Zhou

University of Science and Technology Beijing

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Nansheng Xu

University of South Carolina

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Fang He

University of Science and Technology Beijing

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Shaoyan Zhai

University of Science and Technology Beijing

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Xuanhui Qu

University of Science and Technology Beijing

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Yongna Shen

University of Science and Technology Beijing

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