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王进贤教授

于2020-04-29录入


姓名:王进贤


职称:工学博士 教授  博士生导师

办公室/实验室地点:BETVlCTOR登录网站    南区实训楼936

电话:  18686684860

电子信箱: wjx87@sina.com / wangjinxian@cust.edu.cn

主要学习、工作经历 

一、教育背景:
1998
6月毕业于长春光学精密机械学院材料工程系,获精细化工学士学位;
2000
9月至20036月在BETVlCTOR登录网站攻读硕士研究生,获应用化学硕士学位;
2004
9月至20104月在BETVlCTOR登录网站攻读博士研究生,获光学工程博士学位;
2014
7月至201712月在中科院长春应用化学研究所,从事博士后研究。
二、工作经历:
1998
7月至20009月就职于山西兴安化学工业集团民爆炸药研究所;
2003
6月至今供职于bevitor伟德官网网址
三、主要研究方向 
主要从事无机功能材料尤其特种硫化物的合成及其在能源存储领域的应用研究。具体包括:
1
.硫化物固体电解质及系列关键材料产业化开发

2.锂离子电池电极材料合成与改性研究

3.全固态锂电池研究

四、主要教学工作

() 本科生课程:
纳米材料制备技术、锂离子电池
    
(
) 研究生课程:
    
纳米材料与技术研究进展

化学电源概论

 主要学术成果 

()项目
1.
动力电池用镍锰氧化物复合材料的合成与性能研究,20170101128JC,组长,吉林省科技发展计划项目,2017/01-2019/1213万元
2.
车用动力锂离子电池正极材料的合成与性能研究(13KJ48),组长,长春市科技局计划项目,2014.01-2015.1225
3.
低维纳米结构稀土硫化物的合成与高温热电性能研究(20112216120003),组长,高等学校博士学科点专项科研基金(新教师类)2012.01-2014.124
4.
高容量锂离子电池正极纳米材料的合成与性能研究,吉林省教育厅十一五科学技术研究项目,经费6万,第二名

()获奖

1. 王进贤; 于文生; 刘桂霞; 董相廷; 王昕璐; 宋超; 张洪波; 杨颖; 王婷婷; 马千里; 杨铭. 低维纳米结构锂离子电池电极材料合成技术,吉林省科学技术二等奖(技术发明),2016.11
2.
王进贤,董相廷. 静电纺丝技术与无机纳米材料合成,吉林省自然科学学术成果二等奖,吉林省科学技术协会、吉林省人力资源和社会保障厅,2014.11
3.
刘桂霞,王进贤,刘艳,洪广言,关红霞, 白光LED用稀土发光材料的可控合成、发色发光及能量传递研究,吉林省自然科学奖,三等奖,2018.10
4.
赵馨茹,王进贤; 董相廷; 刘桂霞; 于文生; 王立民. 锂离子电池用LiNixCoyMn1-x-yO2三元正极材料的结构设计与性能研究进展,吉林省自然科学学术成果三等奖,2015.10
5.
董相廷,王进贤,于文生,刘桂霞,孙晶,宋超,徐佳,徐淑枝,于薇. 低维二氧化钛纳米材料制备技术. 吉林省科学技术二等奖(技术发明), 2013.12

(三)专著
王进贤,董相廷. 静电纺丝技术与无机纳米材料合成. 国防工业出版社,出版号:ISBN 978-7-118-08186-2/TP·1000,出版日期:2012.08
 (
) 代表性论文

1.     Zheng Mingyuan, Li Xin, Sun Jianwei, Wang Xinlu, Liu Guixia, Yu Wensheng, Dong Xiangting, Wang Jinxian*. Research progress on chloride solid electrolytes for all-solid-state batteries. Journal of Power Sources 2024, 595, 234051

2.     Jing Wang, Xin Li, Xinlu Wang, Guixia Liu, Wensheng Yu, Xiangting Dong, Jinxian Wang*.The synergistic effects of dual substitution of Bi and Ce on ionic conductivity of Li7La3Zr2O12 solid electrolyte, Ceramics International, 2024, 50 (4), 6472-6480

3.     Jianlong Zhao, Xinlu Wang, Tingting Wei, Zumin Zhang, Wensheng Yu, Guixia Liu, Xiangting Dong, Jinxian Wang*. Current challenges and perspectives of garnet-based solid-state electrolytes. Journal of Energy Storage, 2023, 68:107693

4.     Zhang Zumin, Wang Xinlu, Li Xin, Zhao Jianlong, Liu Guixia, Yu Wensheng, Dong Xiangting, Wang Jinxian*. Review on composite solid electrolytes for solid-state lithium-ion batteries. Materials Today Sustainability, 2023, 21: 100316

5.     Ding Hongbing, Wang Xinlu, Wang Jinjin, Zhang Hongbo, Liu Guixia, Yu Wensheng, Dong Xiangting, Wang Jinxian*. Morphology-controllable synthesis and excellent electrochemical performance of Ni-rich layered NCM622 as cathode materials for lithium-ion batteries via glycerin-assisted solvothermal method. Journal of Power Sources, 2023, 553: 232307

6.     Li Xin, Shao Chenglong, Wang Xinlu, Wang Jinjin, Liu Guixia, Yu Wensheng, Dong Xiangting, Wang Jinxian*. Preparation of Fe3O4/FexSy heterostructures via electrochemical deposition method and their enhanced electrochemical performance for lithium-sulfur batteries. Chemical Engineering Journal, 2022, 446: 137267

7.     Shao Chenglong, Wang Xinlu, Yang Changsheng, Liu Guixia, Yu Wensheng, Dong Xiangting, Zhang Qinfeng, Wang Jinxian*. Two steps synthesis of plum-shaped C@Ni/MnO nanofiber heterostructures for trapping and catalyzing polysulfides in lithium-sulfur batteries. J. Colloid Interface Sci., 2022, 613, 15-22

8.     Cheng Xiang, Hou Baoting, Wang Xinlu, Yu Wensheng, Liu Guixia, Dong Xiangting, Wang Jinxian*. Low-temperature preparation of pure-phase Ce2S3 by sulfurization of cerium carbonate and their novel electrochemical properties. Optoelectronics and Advanced Materials-Rapid Communications, 2021, 15 (7-8): 381-385

9.     Changsheng Yang, Xinlu Wang, Guixia Liu, Wensheng Yu, Xiangting Dong, Jinxian Wang*. One-step hydrothermal synthesis of Ni-Co sulfide on Ni foam as a binder-free electrode for lithium-sulfur batteries. Journal of Colloid and Interface Science, 2020,565:378-387

10.  Yingying Wang, Xinlu Wang, Ao Jiang, Guixia Liu, Wensheng Yu, Xiangting Dong, Jinxian Wang*. A versatile nitrogen-doped carbon coating strategy to improve the electrochemical performance of LiFePO4 cathodes for lithium-ion batteries. Journal of Alloys and Compounds,2019, 810: 151889-8

11.  Yanshen Gao, Xinlu Wang, Wensheng Yu, Guixia Liu, Xiangting Dong and Jinxian Wang*. Construction of LiMn2O4 microcubes and spheres via the control of the (104) crystal planes of MnCO3 for high rate Li-ions batteries. RSC Adv., 2019, 9, 21009-21017

12.  Bin Yue, Xinlu Wang, Jinxian Wang*, Jing Yao, Xinru Zhao, Hongbo Zhang, Wensheng Yu, Guixia Liu and Xiangting Dong, Au-doped Li1.2Ni0.7Co0.1Mn0.2O2 electrospun nanofibers: synthesis and enhanced capacity retention performance for lithium-ion batteries. RSC Advances, 2018, 8, 4112–4118. 

13.  Ao Jiang, Xinlu Wang, Musen Gao, Jinxian Wang*, Guixia Liu, Wensheng Yu and Hongbo Zhang, Xiangting Dong, Enhancement of electrochemical properties of niobium doped LiFePO4/C synthesized by sol-gel method. J. Chin. Chem. Soc., 2018, 65 (8), 977–981.

14.  Huan Zhang, Lin Cong, Jinxian Wang*, Xinlu Wang, Guixia Liu, Wensheng Yu, Hongbo Zhang, Xiangting Dong and Wei Fan, Impact of CTAB on morphology and electrochemical performance of MoS2 nanoflowers with improved lithium storage properties. J Mater Sci: Mater Electron, 2018, 29, 3631–3639.

15.  Baoting Hou, Xinlu Wang*, Jing Yao, Hongbo Zhang, Wensheng Yu, Guixia Liu, Xiangting Dong, Limin Wang, Jinxian Wang*, Fabrication of Ce2S3/MoS2 Composites via Recrystallization-Sulfurization Method and Their Improved Electrochemical Performance for Lithium-ion Batteries. Journal of Materials Science: Materials in Electronics, 2017, 28(16):12297-12305.

16.  Baoting Hou, Xinlu Wang, Jinxian Wang*, Jing Yao, Hongbo Zhang, Wensheng Yu, Guixia Liu, Xiangting Dong, Limin Wang, In situ synthesis of homogeneous Ce2S3/MoS2 composites and their electrochemical performance for lithium ion batteries. RSC Advances, 2017, 7 (11): 6309-6314.

17.  Jing Yao, Xinlu Wang, Xinru Zhao, Jinxian Wang*, Hongbo Zhang, Wensheng Yu, Guixia Liu, Electrospun Li2MnO3-Modified Li1.2NixCo0.1Mn0.9-xO2 Nanofibers: Synthesis and Enhanced Electrochemical Performance for Lithium-Ion Batteries. Electronic Materials Letters, 2016, 12 (6) :804-811.

18.  Shumin Liu, Jinxian Wang*, Jianwei Wang, Feifei Zhang, Limin Wang*, Highly uniform Co9S8 nanoparticles grown on graphene nanosheets as advanced anode materials for improved Li-storage performance. Applied Surface Science, 2016, 390: 86-91.

19.  Baoting Hou, Xinlu Wang*, Jing Yao, Hongbo Zhang, Wensheng Yu, Guixia Liu, Xiangting Dong, Limin Wang, Jinxian Wang*, Fabrication of Ce2S3/MoS2 Composites via Recrystallization-Sulfurization Method and Their Improved Electrochemical Performance for Lithium-ion Batteries. Journal of Materials Science: Materials in Electronics, 2017, 28(16):12297-12305

20.  Shumin Liu, Jinxian Wang*, Jianwei Wang, Feifei Zhang, Fei Liang and Limin Wang. Controlled construction of hierarchical Co1-xS structures as high performance anode materials for lithium ion batteries. CrystEngComm, 2014, 16(5):814-819

(五)获授权发明专利

1.                  王进贤,董相廷,程功,刘桂霞,于文生,徐佳. 一种TiO2纳米粒子多孔薄膜及其制备方法. 授权号:ZL201010550119.8

2.                  王进贤,董相廷,刘维娟,刘桂霞,于文生,鲁统晓.链状结构稀土磷酸盐纳米材料及其制备方法. 授权号:ZL201010550147.X

3.                  王进贤, 董相廷, 郑惠元, 刘桂霞, 于文生, 徐佳. 锂离子电池正极材料磷酸铁锂纳米带及其制备方法,授权号:ZL201110249540.X

4.                  王进贤, 董相廷, 于文生, 郑惠元, 刘桂霞, 徐佳. 锂离子电池正极材料磷酸铁锂纳米阵列及其制备方法,授权号:ZL201110249499.6

5.                  王进贤,董相廷,郑惠元,徐光岳,彭京蒙,齐娜娜,李双宝.锂离子电池正极材料磷酸铁锂纳米纤维及其制备方法,授权号:ZL201110249618.8

6.                  王进贤,于文生,董相廷,赵世超,于淑晶,刘桂霞,林杰华.纺锤形磷酸铁锂纳米束及其制备方法. 授权号:ZL201110272498.3

7.                  王进贤,董相廷,于长娟,刘桂霞,于文生.稀土氟化物纳米纤维及其制备方法.授权号:ZL201010107993.4

8.                  王进贤,董相廷,张立斌,刘桂霞.一种制备钛酸锌@二氧化钛多晶纳米电缆的方法.授权号:ZL201010117236.5

9.                  王进贤,董相廷,周博密,刘桂霞,李正宇,于文生.稀土氟化物/稀土氟氧化物复合纳米纤维制备方法.授权号:ZL200810050959.0

10.           王进贤,董相廷,于长娟,刘桂霞,于文生.稀土氟化物纳米纤维及其制备方法.授权号:ZL201010107993.4

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