王接喜

教授 博士生导师 硕士生导师

入职时间:2017-02-28

所在单位:冶金与环境学院

办公地点:中南大学本部冶金馆107

学位:博士学位

毕业院校:中南大学

学科:冶金工程

曾获荣誉:

2023年第六届全国有色金属优秀青年科技奖

2022年湖南省科技创新领军人才

2021年国家优秀青年基金获得者

2020年第十八届全国高校冶金院长奖

2020年湖南省杰出青年基金获得者

2019年芙蓉学者(青年学者)

2019年湖湘青年英才

2017年国家博士后创新人才支持计划

2017年湖南省优秀博士学位论文

2015年宝钢教育基金特等奖

2015年湖南省优秀毕业生

2014年中南大学十大杰出学子

2014年中南大学拔尖创新博士生特等奖

2013年芙蓉学子-榜样力量(学术创新奖)

丁晓博论文"High-performance spherical LiVPO4F/C cathode enabled by facile spray pyrolysis"被SCIENCE CHINA Technological Sciences接收发表

发布时间:2020-04-25

点击次数:

LiVPO4F suffers problems of difficulty in synthesis and poor conductivity. To solve these, herein sub-micro spherical LiVPO4F/C is synthesized from a highly-reactive hollow VPO4/C sphere that is derived from a facile and fast spray pyrolysis for the first time. Uniform carbon coating layer with a thickness of 5-8 nm is observed on the surface of the particles, helping to improve the electronic conductivity, suppress the particle growth and protect the particles from corrosion by the electrolyte. The particles are shaped as fine sub-micro spheres, which are beneficial for shortening the distance for Li+ transport. Rietveld refinement for the X-ray diffraction pattern of as-prepared sample shows high-purity triclinic LiVPO4F with an enlarged lattice volume, enabling faster Li+ transport in the prepared material. Accordingly, the resulted LiVPO4F/C demonstrates superior electrochemical properties, delivering 135.4, 91.1 mAh g–1 at 1 C, 40 C respectively, and remaining the capacity of 93.3 mAh g-1 after 500 cycles at 20 C with the retention of 95.0 %. The method introduced here provides an efficient way to address the serious problems of preparing high-purity LiVPO4F with good conductivity.


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