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Characters' Life in Wang Xianyou's Works
1996 received a doctorate in metallurgical physical chemistry from Central South University.

1998 postdoctoral fellow, Institute of New Energy Materials Chemistry, Nankai University.

1999 was promoted to professor.

In 2000, he was engaged in postdoctoral research at Technion- Israel Institute of Technology.

200 1 Visiting Professor, Technical University of Valencia, Spain.

In 2003, he was a visiting professor at UNAM.

Now he is a professor and doctoral supervisor at Xiangtan University School of Chemistry. Undergraduate: physical chemistry, electrochemical principle.

Master students: chemical kinetics, electrochemical research methods

Doctoral student: principles of electrochemical research methods 1. Preparation method of nano-structured heterogeneous nickel hydroxide.

2. A method for preparing an electrode material for an ultra-iron (VI) battery. ZL0 1 13 1635.7

3. Electroplating Zn-Fe alloy on gears and its black passivation process.

Preparation method of cathode material for alkaline battery 37 133 1.9

Sodium ion battery and its preparation method. +0000. 100008008005

Secondary battery pole piece base material with nickel-based composite coating+1038616.10086.0008000000006

7. A porous nickel-plated steel strip and its manufacturing method. 38660.6868686866 1

8. A preparation method of trace water ferric fluoride cathode material for lithium secondary battery.

9. A preparation method of bismuth fluoride cathode material for lithium secondary battery.

10.? Preparation method of -MnO2 _ 2. 200710192679.91.National Natural Science Foundation Project: Preparation and performance study of new cathode materials for lithium secondary batteries based on chemical reaction exchange energy, with approval numbers of 20673092, 2006-2007, and host 2.

"Eleventh Five-Year" National Defense Basic Scientific Research Project, 2005-2007, with approval number: A3720 06 1 186, presided over.

3.2004 National Natural Science Foundation Project: Preparation of cathode materials for sodium ion batteries.

Compilation and performance research, 2005-2007, approval number: 50472080, presided over;

4. The guiding project of the Tenth Five-Year Plan of National Science and Technology: preparation and application research of high-performance MH-Ni battery electrode materials, with the approval number of 2003BA433C, which was jointly declared and presided over by Jiangxi Jing 'an Hi-Tech;

5. Natural Science Foundation of Hunan Province in 2004: Research on Fluorophosphate Cathode Materials for Sodium Ion Batteries, 2004-2005, with the approval number of 04JJ3040.

6. Key project of Hunan Provincial Department of Education: Preparation and performance study of high-performance layered lithium manganate, a new cathode material for lithium-ion batteries, 2004-2006, with approval number 04A054, presided over;

7. Key project of the Ministry of Education: Preparation and performance study of high-performance layered lithium manganate, a new cathode material for lithium-ion batteries, 2004-2006, with approval number 205 109, presided over;

8. Key project of Hunan Province in 2005: Preparation and performance research of high-performance layered lithium manganate, 2005-2007, with approval number of 05GK20 15, presided over;

9. Key Project of Hunan Natural Science Foundation in 2005: Study on Fluorophosphate Cathode Materials for Sodium Ion Batteries, 2005-2007, with approval number 05JJ200 13, presided over;

10. Natural Science Foundation of Jiangsu Province Project: Preparation and Performance Research of Sodium Ion Novel Cathode Materials, 2003-2005, with approval number BK2003092, presided over.

1 1. Horizontal joint project: research on high-performance electrode materials of power batteries for electric vehicles and electric bicycles, and signed a cooperative development contract with Jiangxi Jing 'an Chemical Co., Ltd. of RMB10.3 million, and jointly developed and hosted the high-performance electrode materials of MH/Ni batteries for electric bicycles. 1. Electrochemical characteristics of nickel hydroxide modified by chemical cobalt. The hydrogen energy in it. 1998, 23( 10), 873 2. Surface modification and electrochemical study of spherical nickel hydroxide. J. power supply 1998, 7222 1 3. Effect of electroless nickel-cobalt plating on the performance of nickel hydroxide electrode of rechargeable alkaline battery. Journal of China Nonferrous Metals Society. 1998, 8(4), 666 4. Study on the impedance of nickel hydroxide electrode deposited by cobalt. The hydrogen energy in it. 1999, 24( 10), 973 5. Cyclic voltammetric study of cobalt-coated paste nickel hydroxide. Journal of applied electrochemistry1998,28 (12), 1377 6. Physical and electrochemical properties of aluminum substituted nickel hydroxide. Journal of Applied Electrochemistry1999,29 (7), 853 7. Influence of charging state on impedance spectrum of sealed ni-MH battery. J. alloys and compounds. 1999, 293-295788 The correlation system in Nd-Al-Si system at 8.5000℃. J. alloys and compounds. 2001,325190-193 9. Study on the properties of nanostructured heterogeneous nickel hydroxide. J. power supply In 2003,115153-16010. Study on oxygen reduction catalysts for zinc-air batteries. J. power supply In 2003,124278-28411.Oxygen-catalyzed precipitation reaction on nickel hydroxide electrode modified by electroless cobalt plating. J. hydropower energy in it. 2004, 29967-972 12. Sol-gel template synthesis of highly ordered manganese dioxide nanowire arrays. J. power supply In 2005,140 (1), 21-21513. Electrochemical study of nanostructured heterogeneous nickel hydroxide. Journal of new materials for electrochemical systems. In 2005, 8101-10814. Quick activation of MMNI5? Pd nanoparticles impregnated xMx-based hydrogen storage alloy. J. power supply 2006,155470-47415. Preparation and performance study of carbon aerogels electrode for supercapacitor. Journal of power resources. In 2006,158784-78816. The layered Li [Ni1/3co1/3] O2 cathode material with high tap density was synthesized by hydroxide coprecipitation method and its characterization. J of power supply. In 2006, the compilation of158654-65817.nav1? XCrxPO4F as cathode material of sodium ion battery. J of power supply. 2006,160698-70318. Synthesis and electrochemical properties of layered Li [Ni0.333co0.333mn0.293al0.04] O2? Preparation of zFz cathode materials by sol-gel method. J of power supply. In 2006,160657-66119. A new MnO 2·xH2O/CRF composite electrode for supercapacitors. J of power supply. 2006,1601501-1505 20. Characterization, properties and application of hydrated manganese oxide prepared by electrochemical method in supercapacitors. Journal of electrochemistry. In 2006, 521758-176221.Synthesis conditions of hydroxide coprecipitation on the structure and electrochemical properties of layered Li [Ni1/3co1/3mn1/3] O2 cathode materials. Energy magazine. 2006,161601-605 22. Nickel hydroxide/activated carbon composite electrode for electrochemical capacitors. Energy magazine. 2007, 164425-429 23. preparation and characterization of ruo 2 xh2o/carbon aerogels composite for supercapacitors. Applied electrochemistry. 2007,371129-1135 24. Structure and electrochemical properties of carbon aerogels synthesized at room temperature for supercapacitors. Journal of amorphous solids. 2008,354 (1),19-24 25. Electrochemical behavior of Li3V2(PO4)3/C composite cathode material for lithium ion batteries. Material letter. June 2008 (10-11),1646-1648 26. Preparation of NaV 1-xAlxPO4F as cathode material for sodium ion batteries. Trans. Nonferrous metals. Socialist China a. 2008, 18346-350 27. Study on impedance and state of sealed Ni-MH battery, Inter Milan. Seminar on metal hydrogen system. 1998, 28. Study on the properties of spherical heterogeneous nickel hydroxide. Mechanics and materials engineering for science and experiment. 200 1, 29. Study on the surface of black chromate conversion film on Zn-Fe alloy coating. Mechanics and materials engineering for science and experiment. 200 1, 42 1 30. Study on the surface morphology and phase structure of electrodeposited zinc and zinc-iron coatings in sulfate solution. Mechanics and materials engineering for science and experiment. Synthesis and electrochemical study of 200 1, 432 3 1. Nanostructured heterogeneous nickel hydroxide, electrochemical communication. International conference on solar energy and battery materials. 2002, 32. Oxygen evolution reaction on nickel hydroxide electrode modified by electroless cobalt plating. International conference on solar energy and battery materials. 2002,