1、科研项目:近期,限10项 支持完成国家自然基金面上项目一项。 主持教育部科技研究重点项目一项。 主持完成归国留学人员启动基金项目一项。 主持完成天津市教委项目一项。 在研天津市科委课题一项 横向项目: Ti合金耐海水腐蚀研究 2、论文、专著:近期代表作,限10篇(部) 1. Huang, Y., Jiang, Y., Jiang, X., 2020. Preparation of room temperature liquid metal negative electrode for lithium ion battery in one step stirring. Materials Letters 276, 128261. https://doi.org/10.1016/j.matlet.2020.128261 2. Wang, H., Lan, X., Huang, Y., Jiang, X., 2019. Lithium Storage Property of Graphite/AlCuFe Quasicrystal Composites. Chinese Physics Letters 36, 098201. https://doi.org/10.1088/0256-307X/36/9/098201 3. Lan, X., Sun, Z., Jiang, X., 2019. Al–Cu–Fe quasicrystals as the anode for lithium ion batteries. Journal of Alloys and Compounds 805. https://doi.org/10.1016/j.jallcom.2019.07.148 4. Guo, Y., Jiang, X., Ang, Y., 2015. Characterization of Si/Artificial Graphite Composite Made by Mechanical Alloying for Li-Ion Cells. Materials Science Forum 814, 71–75. https://doi.org/10.4028/www.scientific.net/MSF.814.71 5. Ang, Y., Ren, X., Dou, Z., Jiang, X., 2015. Lithiation/ Delithiation Process of Silicon-Carbon Composites Prepared by Mechanical Alloying. Materials Science Forum 814, 49–53. https://doi.org/10.4028/www.scientific.net/MSF.814.49 6. Jiang, X., Ang, Y., Liu, H., 2014. Micro-arc oxidation of NiTi in Na2SiO3 electrolyte. RARE METAL MATERIALS AND ENGINEERING 43, 110–114. 7. Liu, H., Jiang, X., 2014. Electrochemical lithium storage performance of Si/C based anode materials prepared by mechanical alloying. Materials Research Innovations 18, S4-10. https://doi.org/10.1179/1432891714Z.000000000638 8. ZHANG, R., Jiang, X., 2013. Lithium Storage Property of Metallic Silicon. Journal of The Chinese Ceramic Society 41. https://doi.org/10.7521/j.issn.0454–5648.2013.02.07 9. 姜训勇, 张磊, 张瑞, 刘庆锁, TiZrNi 准晶电化学储氢性能研究. 稀有金属, 2012(02): p. 248-253 10 普通渗碳剂与新型高聚物渗碳剂进行NiTi合金固体渗碳的对比,金属学报,2003年9月, 3、其他成果(奖励、专利等): 姜训勇(#); 郭亚楠, 将AlCuFe准晶合金用于锂离子电池负极材料的方法, 2017.1. 11, 中国, 2015012300645230 (专利) |