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Featured researches published by Yongna Shen.


Journal of Materials Chemistry | 2014

Evaluation of La0.3Sr0.7Ti1−xCoxO3 as a potential cathode material for solid oxide fuel cells

Zhihong Du; Hailei Zhao; Yongna Shen; Lu Wang; Mengya Fang; Konrad Świerczek; Kun Zheng

Perovskites La0.3Sr0.7Ti1−xCoxO3 (LSTCs, x = 0.3–0.6) are systematically evaluated as potential cathode materials for solid oxide fuel cells. The effects of Co substitution for Ti on structural characteristics, thermal expansion coefficients (TECs), electrical conductivity, and electrochemical performance are investigated. All of the synthesized LSTCs exhibit a cubic structure. With Rietveld refinement on the high-temperature X-ray diffraction data, the TECs of LSTCs are calculated to be 20–26 × 10−6 K−1. LSTC shows good thermal cycling stability and is chemically compatible with the LSGM electrolyte below 1250 °C. The substitution of Co for Ti increases significantly the electrical conductivity of LSTC. The role of doping on the conduction behavior is discussed based on defect chemistry theory and first principles calculation. The electrochemical performances of LSTC are remarkably improved with Co substitution. The area specific resistance of sample La0.3Sr0.7Ti0.4Co0.6O3 on the La0.8Sr0.2Ga0.8Mg0.2O3−δ (LSGM) electrolyte in symmetrical cells is 0.0145, 0.0233, 0.0409, 0.0930 Ω cm2 at 850, 800, 750 and 700 °C, respectively, and the maximum power density of the LSGM electrolyte (400 μm)-supported single cell with the Ni–GDC anode, LDC buffer layer and LSTC cathode reaches 464.5, 648, and 775 mW cm−2 at 850 °C for x = 0.3, 0.45, and 0.6, respectively. All these results suggest that LSTC are promising candidate cathode materials for SOFCs.


Physical Chemistry Chemical Physics | 2010

Preparation and electrical properties of Ca-doped La2NiO4+δ cathode materials for IT-SOFC

Yongna Shen; Hailei Zhao; Xiaotong Liu; Nansheng Xu


Journal of Membrane Science | 2010

Systematic investigation on structure stability and oxygen permeability of Sr-doped BaCo0.7Fe0.2Nb0.1O3−δ ceramic membranes

Yuan Li; Hailei Zhao; Nansheng Xu; Yongna Shen; Xionggang Lu; Weizhong Ding; Fushen Li


International Journal of Hydrogen Energy | 2014

Effect of ionic size of dopants on the lattice structure, electrical and electrochemical properties of La2−xMxNiO4+δ (M = Ba, Sr) cathode materials

Yongna Shen; Hailei Zhao; Jingcan Xu; Xin-Xin Zhang; Kun Zheng; Konrad Świerczek


Journal of Power Sources | 2013

Lattice structure, sintering behavior and electrochemical performance of La1.7Ca0.3Ni1−xCuxO4+δ as cathode material for intermediate-temperature solid oxide fuel cell

Yongna Shen; Hailei Zhao; Konrad Świerczek; Zhihong Du; Zhixiang Xie


Journal of The European Ceramic Society | 2014

Synthesis and densification of lanthanum silicate apatite electrolyte for intermediate temperature solid oxide fuel cell via co-precipitation method

Tianrang Yang; Hailei Zhao; Jaeho Han; Nansheng Xu; Yongna Shen; Zhihong Du; Jie Wang


International Journal of Hydrogen Energy | 2013

Electrochemical performance of Pr1−xYxBaCo2O5+δ layered perovskites as cathode materials for intermediate-temperature solid oxide fuel cells

Hailei Zhao; Yu Zheng; Chunyang Yang; Yongna Shen; Zhihong Du; Konrad Świerczek


Separation and Purification Technology | 2012

Structure, electrical conductivity and oxygen permeability of Ba0.6Sr0.4Co1−xTixO3−δ ceramic membranes

Nansheng Xu; Hailei Zhao; Yongna Shen; Ting Chen; Weizhong Ding; Xionggang Lu; Fushen Li


International Journal of Hydrogen Energy | 2012

Bismuth doping effects on the structure, electrical conductivity and oxygen permeability of Ba0.6Sr0.4Co0.7Fe0.3O3−δ ceramic membranes

Jianying Yang; Hailei Zhao; Xiaotong Liu; Yongna Shen; Lihua Xu


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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Zhihong Du

University of Science and Technology Beijing

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Nansheng Xu

University of South Carolina

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Chunyang Yang

University of Science and Technology Beijing

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Konrad Świerczek

AGH University of Science and Technology

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Fushen Li

University of Science and Technology Beijing

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Jie Wang

University of Science and Technology Beijing

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Chunlin Yan

University of Science and Technology Beijing

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