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:

2026年首届湖南省科学技术青年英才奖

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)

博士生闫禹岑论文“Oxygen vacancy-driven coherent interface engineering boosts carbon-coated LiNiO2 performance”被Science Bulletin接收发表

发布时间:2026-08-17

点击次数:

The practical application of LiNiO2 (LNO) is hindered by structural failures such as microcrack propagation and rock-salt phase accumulation, caused by its high reactivity. This study proposes an oxygen vacancy-driven (OVD) strategy, constructing a coherent interface with a Li-containing Ti-doped rock-salt phase on the surface of LNO particles, while introducing a uniform mixed coating layer of TiO2 and carbon. Unlike electrochemically inert NiO phase, this Li-containing Ti-doped rock-salt phase exhibits high electronic and ionic conductivities, alleviating the anisotropic stress accumulation and suppressing further rock-salt phase formation during cycling. The TiO2 coating reduces parasitic side reactions at the cathode-electrolyte interface, while the carbon coating further enhances electron transport. As such, OVD-LNO demonstrates exceptional cycling and rate properties, achieving capacity retention of 83.0% after 400 cycles at 1 C and maintaining 188.3 mAh g1 at 5 C. This pre-constructed rock-salt phase interface modification strategy opens a new pathway for developing high-capacity, long-life cathodes. 

上一条: 博士生刘松霖论文"Selective recovery of lithium from waste aluminum electrolyte and regeneration of potassium-rich aluminum electrolyte"被Waste Management接收发表

下一条: 博士生冯依曼论文“Exploring Stacking Pressure-Induced Mechanical Failure of Ni-Rich Cathode in Sulfide Solid-State Batteries”被Chemical Science接收发表