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个人简介

工作简历 教授, 2015.7至今, 武汉科技大学化学工程与技术学院 副教授,2009.3-2015.7,武汉科技大学化学工程与技术学院 讲 师,2004.9-2009.3,武汉科技大学化学工程与技术学院 助 教,2002.7-2004.9,武汉科技大学化学工程与技术学院 助 工,1996.7-1999.9,大重集团公司设计研究院炼焦科 教育背景 2004.9 -2009.6 在武汉科技大学材料与冶金学院材料学专业学习,获工学博士学位; 1999.9-2002.6在大连理工大学化工学院化学工程专业学习,获工学硕士学位; 1992.9-1996.7在武汉冶金科技大学化工系煤化工专业学习,获本科学士学位

研究领域

(1)超高温陶瓷有机前驱体合成及表征; (2)高温抗氧化、抗烧蚀炭/炭复合材料制备技术及防热和热响应机制研究; (3)改性煤焦油沥青制备高级炭材料的研究

近期论文

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1) Z.J. Dong, S.X. Liu, X.K. Li , A. Westwood, G.M. Yuan, Z.W. Cui, Y. Cong. Influence of infiltration temperature on the microstructure and oxidation behavior of SiC–ZrC ceramic coating on C/C composites prepared by reactive melt infiltration. Ceramics International, 2015, 41(1): 797-811. 2) Zhijun Dong, Xian Zhang, Qing Huang, Jiang Zhang, Xiaohua Zuo, Wen Li, Guanming Yuan, Xuanke Li. Synthesis and pyrolysis behavior of a soluble polymer precursor for ultra-fine zirconium carbide powders. Ceramics International, 2015, 41(6): 7359-7365. 3) Xian Zhang, Zhijun Dong*, Qing Huang, Yanjun Li, Xu Zhang, Guanming Yuan, Xuanke Li*. Preparation of zirconium diboride powders by co-pyrolysis of a zirconium-containing organic precursor and polyborazine using a solution based method. Ceramics International, 2014, 40(9): 15207-15214. 4) Z.J. Dong, X.K. Li, G.M. Yuan, Z.W. Cui, Y. Cong, A. Westwood. Tensile strength, oxidation resistance and wettability of carbon fibers coated with a TiC layer using a molten salt method. Materials and Design , 2013, 50:156-164 5) Z.J. Dong, X.K. Li, G.M. Yuan, Z.W. Cui, Y. Cong, A. Westwood. Synthesis in molten salts and formation reaction kinetics of tantalum carbide coatings on various carbon fibers. Surface & Coatings Technology, 2012, 212: 169-179 6) Z.J. Dong, X. K. Li, G. M. Yuan, N. Li, Z. J. Hu. The formation of titanium carbide coating on carbon fibres by reacting titanium hydride with carbon fibres in molten salts. Thin Solid Films, 2009, 517(11): 3248-3252 7) Z.J. Dong, X.K. Li, G.M. Yuan, Y. Cong, N. Li, Z.J.Hu, Z.Y. Jiang, A. Westwood. Fabrication of protective tantalum carbide coatings on carbon fibers using a molten salt method. Applied Surface Science, 2008, 254(18): 5936-5940 8) Z.J. Dong, X.K. Li, G.M. Yuan, Y. Cong, Z. W. Cui. Fabrication and reaction kinetics of tantalum carbide coatings on carbon fibers by a molten salt synthesis route. Carbon conference in Shanghai. 2011, 7. 9) X. H. Zuo, Z. J. Dong, W. Li, et al. Oxidation behavior of carbon-silicon and carbon-boron-silicon alloys derived from solvent soluble silicon and boron-silicon doped coal tar pitches. Materiali in Tehnologije, 48 (2014) 1, 59–66. 10) Xuanke Li, Zhijun Dong, Aidan westwood, Andy Brown, Shaowei Zhang, Rik Brydson, Nan Li, Brian Rand. Preparation of a titanium carbide coating on carbon fibres using a molten salt method. Carbon,2008, 46(2): 305-309 11) Xuanke Li, Zhijun Dong, Aidan Westwood, Andy Brown, Rik Brydson, Alex Walton, Guanming Yuan, Zhengwei Cui, and Ye Cong. Low-Temperature Preparation of Single Crystal Titanium Carbide Nanofibers in Molten Salts. Cryst. Growth Des., 2011, 11 (7): 3122–3129 12) Guanming Yuan, Xuanke Li, Zhijun Dong, Aidan Westwood, Brian Rand, Zhengwei Cui, Ye Cong, Jiang Zhang, Yanjun Li, Zhongwei The structure and properties of ribbon-shaped carbon fibers with high orientation Carbon, Volume 68, March 2014, Pages 426-439 13) Guanming Yuan, Xuanke Li, Zhijun Dong, Xiaoqing Xiong, Brian Rand, Zhengwei Cui, Ye Cong, Jiang Zhang, Yanjun Li, Zhongwei Zhang, Junshan Wang Pitch-based ribbon-shaped carbon-fiber-reinforced one-dimensional carbon/carbon composites with ultrahigh thermal conductivity 14) Guanming Yuan, Xuanke Li, Zhijun Dong, Aidan Westwood, Zhengwei Cui, Ye Cong , Hongda Du, Feiyu Kang. Graphite blocks with preferred orientation and high thermal conductivity. Carbon, 2012, 50: 175-182. 15) Xiaohua Zuo, Xuanke Li, Zhijun Dong, Guan Ming Yuan, Zheng Wei Cui. Oxidation resistant of silicon-boron pitch carbonization product. Advanced Materials Research, 2013, 652-654, 356 16) Ye Cong, Xuanke Li, Yun Qin, Zhijun Dong, Guanming Yuan, Zhengwei Cui, Xiaojun Lai. Carbon-doped TiO2 coating on multiwalled carbon nanotubes with higher visible light photocatalytic activity. Applied Catalysis B: Environmental, 2011, 107 (1-2): 128-134.

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