王先友的人物生平

 2025-01-15 04:24:01  阅读 658  评论 0

摘要:1996年获中南大学冶金物理化学专业博士学位1998年南开大学新能源材料化学研究所博士后出站1999年晋升为教授2000年在Technion-Israel Institute of Technology博士后研究2001年在Technical University of Valencia, Spain访问教授2003年National Autonomous University of Mex

1996年获中南大学冶金物理化学专业博士学位

1998年南开大学新能源材料化学研究所博士后出站

1999年晋升为教授

王先友的人物生平

2000年在Technion-Israel Institute of Technology博士后研究

2001年在Technical University of Valencia, Spain访问教授

2003年National Autonomous University of Mexico (UNAM)访问教授

现,任湘潭大学化学学院教授,博士生导师 本科生:物理化学,电化学原理

硕士生:化学动力学,电化学研究方法

博士生:电化学研究方法原理 1. 具有纳米结构的多相氢氧化镍制备方法.01131636.5

2. 一种制备超铁(VI)电池电极材料的方法.ZL01131635.7

3. 齿轮电镀锌-铁合金及其黑色钝化工艺.00113304.7

4. 一种碱性电池正极材料的制备方法.971331.9

5. 钠离子电池及其制备方法.200410046836.1

6. 有镍基复合镀层的二次电池极片基材.200420068162

7. 一种穿孔镀镍钢带及其制造方法.200410045047

8.一种锂二次电池微量水氟化铁正极材料的制备方法.200710192681

9. 一种锂二次电池氟化铋正极材料的制备方法.200710192680.1

10.?-MnO2的制备方法.200710192679.9 1.国家自然科学基金项目:基于化学反应交换能量的锂二次电池新型正极材料的制备及性能研究,批准号:20673092, 2006-2007, 主持 2.

“十一五”国防基础科研项目,2005-2007,批准号: A3720 061186,主持

3.2004年度国家自然科学基金项目:钠离子电池正极材料的

制备及其性能研究,2005-2007,批准号: 50472080, 主持;

4.“十五”国家科技攻关计划引导项目:高性能MH-Ni电池电极材料的制备及应用研究,批准号:2003BA433C,与江西晶安高科技股份有限公司联合申报,主持研究;

5.湖南省2004年自然科学基金项目:钠离子电池氟磷酸盐正极材料的研究,2004-2005,批准号:04JJ3040,主持;

6.湖南省教育厅教育部重点项目:锂离子电池新型正极材料—高性能层状锰酸锂的制备及性能研究,2004-2006,批准号:04A054,主持;

7.教育部重点项目:锂离子电池新型正极材料—高性能层状锰酸锂的制备及性能研究,2004-2006,批准号:205109,主持;

8.2005年湖南省重点项目:高性能层状锰酸锂的制备及性能研究,2005-2007,批准号:05GK2015,主持;

9.2005年湖南省自然科学基金重点项目:钠离子电池氟磷酸盐正极材料的研究,2005-2007,批准号:05JJ20013,主持;

10.江苏省自然科学基金项目:钠离子新型正极材料的制备及性能研究,2003-2005,批准号:BK2003092,主持

11.横向联合项目:电动汽车及电动自行车用动力电池高性能电极材料的研究,与江西晶安化工有限公司签订130万合作开发合同,共同研究和开发电动自行车用MH/Ni电池高性能电极材料,主持。

1. Electrochemical characteristics of nickel hydroxide modified by electroless cobalt. Int.J.Hydrogen Energy. 1998, 23(10), 873 2. Surface modification and electrochemical studies of spherical nickel hydroxide. J.Power Sources. 1998, 72221 3. The effect of electroless cobalt plating upon characteristics of nickel hydroxide electrode for rechargeable alkaline batteries. TRANSACTIONS OF NonFERROUS metaLS SOCIETY OF CHINA. 1998, 8(4), 666 4. Impedance studies of the nickel hydroxide electrode deposited by cobalt. Int.J.Hydrogen Energy. 1999, 24(10), 973 5. Cyclic voltammetric studies of pasted nickel hydroxide microencapsulated by cobalt. J.Appl.Electrochem. 1998, 28(12), 1377 6. Physical and electrochemical characteristics of aluminum-substituted nickel hydroxide. J.Appl.Electrochem. 1999, 29(7), 853 7. Effect of state of charge on impedance spectrum of sealed Ni/MH cells. J.Alloys and Compounds. 1999, 293-295788 8. Phase relations in the Nd–Al–Si system at 5000C. J.Alloys and Compounds. 2001, 325190-193 9. Studies of the performance of nanostructured multiphase nickel hydroxide. J. Power Sources. 2003, 115153-160 10. Studies on the oxygen reduction catalyst for zinc-air battery electrode. J. Power Sources. 2003, 124278-284 11. Oxygen catalytic evolution reaction on nickel hydroxide electrode modified by electroless cobalt coating. Int.J.Hydrogen Energy. 2004, 29967-972 12. Sol–gel template synthesis of highly ordered MnO2 nanowire arrays. J. Power Sources. 2005, 140(1), 211-215 13. Electrochemical study of nanostructured multiphase nickel hydroxide. Journal of New Materials for Electrochemical System. 2005, 8101-108 14. Rapid activation of MmNi5?xMx based MH alloy through Pd nanoparticle impregnation. J. Power Sources. 2006, 155470-474 15. Studies on preparation and performances of carbon aerogel electrodes for the application of supercapacitor. J. of Power Sources. 2006, 158784-788 16. Synthesis and characterization of high tap-density layered Li[Ni1/3Co1/3Mn1/3]O2 cathode material via hydroxide co-precipitation. J. of Power Sources. 2006, 158654-658 17. The preparation of NaV1?xCrxPO4F cathode materials for sodium-ion battery. J. of Power Sources. 2006, 160698-703 18. Synthesis and electrochemical properties of layered Li[Ni0.333Co0.333Mn0.293Al0.04]O2?zFz cathode materials prepared by the sol–gel method. J. of Power Sources. 2006, 160657-661 19. A new type of MnO2·xH2O/CRF composite electrode for supercapacitors. J. of Power Sources. 2006, 1601501-1505 20. Characterization and performance of hydrous manganese oxide prepared by electrochemical method and its application for supercapacitors . Electrochimica Acta. 2006, 521758-1762 21. Effects of synthesis conditions on the structural and electrochemical properties of layered Li[Ni1/3Co1/3Mn1/3]O2 cathode material via the hydroxide co-precipitation method LIB SCITECH. Journal of Power Sources. 2006, 161601-605 22. Nickel hydroxide/activated carbon composite electrodes for electrochemical capacitor. Journal of Power Sources. 2007, 164425-429 23. Preparation and characterization of RuO2·xH2O/carbon aerogel composites for supercapacitors. J Appl Electrochem . 2007, 371129-1135 24. Structure and electrochemical properties of carbon aerogels synthesized at ambient temperatures as supercapacitors. Journal of Non-Crystalline Solids. 2008, 354(1), 19-24 25. Electrochemical Behavior of Li3V2(PO4)3/C composite cathode material for Lithium-Ion Batteries. Materials Letters. 2008, 62(10-11), 1646-1648 26. Preparation of NaV1-xAlxPO4F cathode materials for application of sodium-ion battery. Trans. Nonferrous Met. Soc. China. 2008, 18346-350 27. Studies of impedance and state of sealed nickel-metal hydride (MH) batteries. Inter. Symposium on metal Hydrogen Systems. 1998, 28. Study of performance of spherical multiphase nickel hydroxide. Mechanics and Material Engineering for Science and Experiments. 2001, 29. A surface study of the black chromate conversion film on the zinc-iron alloy deposit. Mechanics and Material Engineering for Science and Experiments. 2001, 421 30. Surface morphology and phase structure investigation of zinc and zinc-iron deposits electrodeposited from sulfate solution. Mechanics and Material Engineering for Science and Experiments. 2001, 432 31. Synthesis and Electrochemical Study of nanostructural multiphase nickel hydroxide, Electrochemistry communication. International Conference of Solar Energy and Batteries Materials. 2002, 32. Oxygen Evolution Reaction on Nickel Hydroxide Electrode Modified by Electroless Cobalt Coating. International Conference of Solar Energy and Batteries Materials. 2002,

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