领域:新材料产业 学校:合肥工业大学职称:
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1) Chenglong Wei, Jigui Cheng*, Jianfeng Li, et al. Tungsten-coated diamond powders prepared by microwave-heating salt-bath plating. Powder Technology, 2018, 338: 274-279. 2) Li Mingming, Hong Tao, Cheng Jigui*,et al. Enhanced proton conductivity of La0. 95Ca0. 05NixNb1-xO4 (0.01≤ x≤ 0.3) through in-situ exsolution of metallic nanocatalysts. Materials Chemistry and Physics, 2018, 208: 226-236. 3) Li Mming, Cheng Jigui*, Gan Yun, et al. In situ construction of Co3O4 nanoarray catalysts on (La0.8Sr0. 2) 0.95 MnO3–δ cathode for high-efficiency intermediate-temperature solid oxide fuel cells. Ceramics International, 2018, 44: 3472-3479. 4) Jianfeng Li,Jigui Cheng*,et al. Effects of partial substitution of copper for cobalt on the microstructure and properties of ultrafine-grained WC-Co cemented carbides. Journal of Alloys and Compounds, 2018, 735: 43-50 5) Li Jianfeng, Cheng Jigui*, Chen Pengqi, et al. Fabrication of WC-Co cemented carbides withgradient distribution of WC grain size and Co composition by lamination pressing and microwave sintering. Ceramics International, 2018, 44:11225-11232. 6) Chen Wen-chao,Cheng Ji-gui*,Chen Hui-pei, et al. Nanosized copper powders prepared by gel-casting method and their application in lubricating oil. TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2018,28(6): 1186-1191 7) Chen Huipei, Cheng Jigui*,Zhang Minglong, et al. Effect of Rare Earth Oxide Addition on the Microstructure and Properties of Ultrafine Grain W-20Cu Composites. RARE METAL MATERIALS AND ENGINEERING, 2018, 47(9): 2626-2630 8) Wei Bangzheng, Wang Yu, Liu Meng, Cheng Jigui*,et al. Effects of Praseodymium Doping onConductivity and Oxygen Permeability of Cobalt-Free Perovskite-Type Oxide BaFeO3-δ. Chinese Journal of Chemical Physics, 2018, 31(2): 191-196. 9) Wang Yu, Cheng Jigui* Huang Min, et al. Effects of surface modification with Co3O4 nanoparticles on the oxygen permeability of Ba0.5Sr0.5Co0.8Fe0.2O3-δ membranes. Applied Surface Science, 2017, 416: 574-580. 10)Li Jianfeng, Cheng Jigui*, Wei Bangzheng, et al. Microstructure and properties of La2O3 doped W composites prepared by a wet chemical process. International Journal of Refractory Metals and Hard Materials, 2017, 66:226-233. 11) Li Jianfeng, Cheng Jigui*, Chen Pengqi, et al. Effects of partial substitution of copper for cobalt on the microstructure and properties of ultrafine-grained WC-Co cemented carbides. Journal of Alloys & Compounds, 2017, 735. 12) Huang Min, Huang Xin, Fei Mingming, Cheng Jigui*. A Mesoporous Structure SnP2O7/Graphite Oxide Composite as Proton Conducting Electrolyte for High-Temperature Proton Exchange Membrane Fuel Cells. INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2017, 12(5): 4585-4596. 13) Xin Huang , Gang Wang , Min Huang , Yuming Deng , MingMing Fei , Chenxi Xu, Jigui Cheng*. Ce3+ doped CeP2O7 Ceramic Electrolyte for high temperature Proton Exchange Membrane Fuel Cell. Int. J. Electrochem. Sci, 2017, 12: 2731-2740. 14) Mingming Li, Jigui Cheng*, Zhenhao Chen, Chenxi Xu. Synthesis and characterisation of MnGaxCr2−xO4(0.1≤x≤1) spinels as potential electrode support materials for intermediate-temperature solid oxide fuel cells. Ceramics International, 2017, 43(5): 4159-4165. 15) Min Huang, Xin Huang, Yuming Deng, Mingming Fei, Chenxi Xu,Jigui Cheng*. Graphite oxide-incorporated SnP2O7 solid composite electrolyte for high-temperature proton exchange membranefuel cells. International Journal of Hydrogen Energy, 2017, 42(2): 1113-1119. 16) Min Huang, Xin Huang, Mingming Fei, Jian Sun, Yuming Deng, Chenxi Xu, Jigui Cheng*.Proton-Exchanged Graphite oxide-incorporated CsXH3-XPMo12O40 with High Conductivity at Intermediate Temperatures. Int. J. Electrochem. Sci, 2017, 12: 240-247. 17) Sun, Wenzhou, Cheng Jigui*, et al.Phase Relations in Si-Al-M-O-C (M = Zr, Mg) Systems. JOURNAL OF PHASE EQUILIBRIA AND DIFFUSION, 2018, 38(1): 30-36. 18) Sun, Wenzhou, Cheng Jigui*, et al. ZrC formation and the phase relations in the SiC-SiO2-ZrC-ZrO2-CaO system. CERAMICS INTERNATIONAL, 2016, 42(8): 10165-10170. 19) Xin Huang, Yuming Deng, Chenxi Xu, Yao Hu, Liang Yang, Paifeng Luo, Yingwei Lu, Jigui Cheng*. Graphite oxide-incorporated CeP2O7/BPO4 solid composite electrolyte for high-temperature proton exchange membrane fuel cells. Fuel, 2016, 179: 299-304. 20) Shi-song Li,Ji-gui Cheng*,Xu-cheng Zhang,Yu Wang,Kui Xie. Composite Cathode Based on Redox-Reversible Nb2TiO7 for Direct High-Temperature Steam Electrolysis. Chinese Journal of Chemical Physics, 2015, 28:323. 21) Mingming Li, Jigui Cheng*, Yun Gan, Shisong Li, Beibei He, Wenzhou Sun. Effects of strontium doping on the structure, oxygen nonstoichiometry and electrochemical performance of Pr2-xSrxNi0.6Cu0.4O4+delta (0.1 <= x <= 0.5) cathode materials [J]. Journal of Power Sources, 2015, 275: 151-158. 22) Shisong Li, Jigui Cheng*, Peipei Li, Xuchen Zhang , Yu Wang. Enhancing the oxygen permeation rate of Ba0.5Sr0.5Co0.8Fe0.2O3-δ membranes by surface loading Co3O4 nanorod catalysts. Surface and Coatings Technology, 2015, 276: 47-54. 23) Yun Gan, Jigui Cheng* , Mingming Li , Hailin Zhan , Wenzhou Sun. Enhanced ceria based electrolytes by codoping samaria and scandia for intermediate temperature solid oxide fuel cells. Materials Chemistry and Physics 2015, 163: 279-285. 24) Beibei He, Dong Ding, Yihan Ling , Ling Zhao, Jigui Cheng. Fabrication and evaluation of stable micro tubular solid oxide fuel cells with BZCY-BZY bi-layer proton conducting electrolytes, International Journal of Hydrogen Energy, 2014, 39(33), 19087-19092 25) Beibei He, Yihan Ling, Jianmei Xu, Ling Zhao, Jigui Cheng. Effect of nickel impregnated hollow fiber anode for micro tubular solid oxide fuel cells, Journal of Power Sources, 2014,258, 391-394 26) Wang Rui,Cheng Jigui*,Jiang Qiumei,Yang Junfang,Wang Yifang. Electrochemical investigation of Y0.5Ca0.5BaCo 4-xZnxO7-Ce0.8Sm0.2O2 composite cathode materials for solid oxide fuel cells,Journal of Power Sources,2013, 239,443-448 27) Li Shisong,Yan Ruiqiang,Wu Guoijan,Xie Kui,Cheng Jigui*. Composite oxygen electrode LSM-BCZYZ impregnated with Co3O4 nanoparticles for steam electrolysis in a proton-conducting solid oxide electrolyzer,International Journal of Hydrogen Energy,2013, 38, 14943–14951 28) |