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Featured researches published by Xie Meng.


Small | 2015

Shape‐Dependent Activity of Ceria for Hydrogen Electro‐Oxidation in Reduced‐Temperature Solid Oxide Fuel Cells

Xiaofeng Tong; Ting Luo; Xie Meng; Hao Wu; Junliang Li; Xuejiao Liu; Xiaona Ji; Jianqiang Wang; Chusheng Chen; Zhongliang Zhan

Single crystalline ceria nanooctahedra, nanocubes, and nanorods are hydrothermally synthesized, colloidally impregnated into the porous La0.9Sr0.1Ga0.8Mg0.2O3-δ (LSGM) scaffolds, and electrochemically evaluated as the anode catalysts for reduced temperature solid oxide fuel cells (SOFCs). Well-defined surface terminations are confirmed by the high-resolution transmission electron microscopy--(111) for nanooctahedra, (100) for nanocubes, and both (110) and (100) for nanorods. Temperature-programmed reduction in H2 shows the highest reducibility for nanorods, followed sequentially by nanocubes and nanooctahedra. Measurements of the anode polarization resistances and the fuel cell power densities reveal different orders of activity of ceria nanocrystals at high and low temperatures for hydrogen electro-oxidation, i.e., nanorods > nanocubes > nanooctahedra at T ≤ 450 °C and nanooctahedra > nanorods > nanocubes at T ≥ 500 °C. Such shape-dependent activities of these ceria nanocrystals have been correlated to their difference in the local structure distortions and thus in the reducibility. These findings will open up a new strategy for design of advanced catalysts for reduced-temperature SOFCs by elaborately engineering the shape of nanocrystals and thus selectively exposing the crystal facets.


Journal of Power Sources | 2014

Sc-substituted La0.6Sr0.4FeO3−δ mixed conducting oxides as promising electrodes for symmetrical solid oxide fuel cells

Xuejiao Liu; Da Han; Yucun Zhou; Xie Meng; Hao Wu; Junliang Li; Fanrong Zeng; Zhongliang Zhan


Journal of Power Sources | 2014

Symmetrical solid oxide fuel cells with impregnated SrFe0.75Mo0.25O3−δ electrodes

Xie Meng; Xuejiao Liu; Da Han; Hao Wu; Junliang Li; Zhongliang Zhan


Journal of Power Sources | 2013

Impregnated nickel anodes for reduced-temperature solid oxide fuel cells based on thin electrolytes of doped LaGaO3

Xuejiao Liu; Xie Meng; Da Han; Hao Wu; Fanrong Zeng; Zhongliang Zhan


International Journal of Hydrogen Energy | 2013

Mn1.5Co1.5O4−δ infiltrated yttria stabilized zirconia composite cathodes for intermediate-temperature solid oxide fuel cells

Xuejiao Liu; Da Han; Hao Wu; Xie Meng; Fanrong Zeng; Zhongliang Zhan


Journal of Power Sources | 2014

Characterization of SrFe0.75Mo0.25O3−δ–La0.9Sr0.1Ga0.8Mg0.2O3−δ composite cathodes prepared by infiltration

Xie Meng; Da Han; Hao Wu; Junliang Li; Zhongliang Zhan


Journal of Power Sources | 2014

Metal-supported solid oxide fuel cells with impregnated SrFe0.75Mo0.25O3 cathodes

Yucun Zhou; Xie Meng; Xiaofeng Ye; Junliang Li; Shaorong Wang; Zhongliang Zhan


Journal of Physics and Chemistry of Solids | 2005

Structure instability of A2Al2B2O7 (A=K, Na) crystals

Xie Meng; Jiaxue Gao; Z. Z. Wang; Ronghan Li; C. T. Chen


Journal of Power Sources | 2014

Evaluation of Ni and Ni–Ce0.8Sm0.2O2−δ (SDC) impregnated 430L anodes for metal-supported solid oxide fuel cells

Yucun Zhou; Chun Yuan; Ting Chen; Xie Meng; Xiaofeng Ye; Junliang Li; Shaorong Wang; Zhongliang Zhan


Journal of Power Sources | 2014

Novel architectured metal-supported solid oxide fuel cells with Mo-doped SrFeO3−δ electrocatalysts

Yucun Zhou; Xie Meng; Xuejiao Liu; Xin Pan; Junliang Li; Xiaofeng Ye; Huaiwen Nie; Changrong Xia; Shaorong Wang; Zhongliang Zhan

Collaboration


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Zhongliang Zhan

Chinese Academy of Sciences

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Hao Wu

Chinese Academy of Sciences

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Shaorong Wang

Chinese Academy of Sciences

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Xuejiao Liu

Chinese Academy of Sciences

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Junliang Li

Chinese Academy of Sciences

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Ting Luo

Chinese Academy of Sciences

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Yucun Zhou

Chinese Academy of Sciences

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Da Han

Chinese Academy of Sciences

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Xiaofeng Ye

Chinese Academy of Sciences

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Chun Yuan

Chinese Academy of Sciences

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