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240. Spinel LiMn2-xTixO4(x = 0.5, 0.8)with High Capacity and Enhanced Cycling Stability Synthesized by a Modified Sol-Gel Method; Guannan He, Yixiao Li, Jie Li, and Yong Yang*; Electrochemical and Solid-State Letters; 13(3), A19-A21

239. The effects of quenching treatment and AlF3 coating on LiNi0.5Mn0.5O2 cathode materials for lithium-ion battery; Hecheng Lin, Jianming Zheng, Yong Yang; Materials Chemistry and Physics; 119, 519–523

238. Methanol-Blocking Perfluorosulfonic Acid Composite Membranes in Direct Methanol Fuel Cells; Li Tao, Zhong Guiming, Yang Yong; Progress in Chemistry; 22(2/3), 522-536

237. Electrochemical behavior of copper current collector in imidazolium-based ionic liquid electrolytes; Chengxin Peng, Li Yang, Shaohua Fang, Jixian Wang, Zhengxi Zhang, Kazuhiro Tachibana, Yong Yang, Shiyong Zhao; J Appl Electrochem; 40, 653–662

236.Structural stability and electronic properties of LiNiN; C.H. Hu, Y. Yang, Z.Z. Zhu; Solid State Communications; 150, 669-674

235. Synthesis and characterization of Nafion/cross-linked PVP semi-interpenetrating polymer network membrane for direct methanol fuel cell; Tao Li, Guiming Zhong, Riqiang Fu, Yong Yang; Journal of Membrane Science; 354, 189–197

234. Highly crystalline macroporous β-MnO2:Hydrothermal synthesis and application in lithium battery; Xingkang Huang, Dongping Lv, Qingshun Zhang, Haitao Chang, Jianlong Gan, Yong Yang;Electrochimica Acta; 55, 4915–4920

233. Silicon nanowires with and without carbon coating as anode materials for lithium-ion batteries; Huixin Chen, Zhixin Dong, Yanpeng Fu, Yong Yang; J Solid State Electrochem; 14, 1829–1834

232. Structural and Electronic Properties of Li-Ion Battery Cathode Material FeF3; R. F. Li, S. Q. Wu, Y. Yang and Z. Z. Zhu; J. Phys. Chem. C; 114, 16813–16817

231. In-situ dilatometric study of Metal/Si multilayer film electrodes; Huaijian Pan, Jing Zhang, Yunhua Chen, Xiangdong Zhuo, Yong Yang; Thin Solid Films; 519, 778–783

230. Structural Design and Two-Dimensional Conductivity of Sheet-Tube Frameworks; C. H. Hu, S. Q. Wu, Y. H. Wen, Y. Yang and Z. Z. Zhu;J. Phys. Chem. C; 2010, 114, 19673–19677

229. 新型锂离子电池正极材料的研究现状及其发展前景; 杨勇; 新材料产业; NO.10(2010)

228. 直接甲醇燃料电池用阻醇全氟磺酸复合质子交换膜; 李涛, 钟贵明, 杨勇; 化学进展; 22(2/3), 522-536

227. 锂电池正极材料 CuCrO4 的合成及表征; 李琳, 李益孝, 杨勇; 电源技术; 34(1), 48-50

226. 电解液添加剂硫酸亚乙酯对锂离子电池性能的影响; 姚宜稳, 许杰, 姚万浩, 王周成, 杨勇; 应用化学; 27(7), 823-827

225. 锂离子电池正极材料 Li2MnSiO4 固体核磁共振谱研究; 程琥, 刘子庚, 李益孝, 陈忠, 杨勇; 电化学; 16(3), 296-299

224. 溶剂及电解质盐对氧在有机电解液体系中电化学还原的影响; 田艳艳, 武巍, 高军, 杨勇; 电化学; 16(4), 420-424

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  • Xiamen University, China
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  • College of Energy
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  • State Key Laboratory of Physical Chemistry of Solid Surfaces
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  • Engineering Research Center of ElectrochemicalTechnology, Ministry of Education

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