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)

李滔论文"A new design concept for preparing nickel-foamsupported metal oxide microspheres with superior electrochemical properties"被Journal of Materials Chemistry A 接收发表

发布时间:2020-04-25

点击次数:

Herein, we introduced a new design concept for fabricating nickel-foam-supported metal oxide microsphere configuration as an anode for lithium-ion batteries (LIBs). Porous metal oxide microspheres were synthesized via spray pyrolysis. A piece of nickel foam was placed at the exit of the reactor to filter the off-gas and thus to obtain the metal oxide powders. A thin layer of porous metal oxide microspheres was uniformly deposited on the nickel foam within 20 minutes. The nickel-foam-supported metal oxide microsphere configuration was directly used as a binder-free anode for the LIBs. The electrochemical properties of the nickel-foam-supported Co3O4 microsphere configuration (prepared as the first target material) were investigated. The as-prepared anode retains a reversible capacity of 1085 mA h g 1 after 180 cycles. More strikingly, it manifests excellent rate performance with a capacity of 555 mA h g 1 even at 3200 mA g 1. Compared to the 3 vailable methods that are typically time-consuming and complicated, this smart strategy described herein is efficient and simple. It is strongly envisioned that this elegant design concept holds reat potential for the efficient synthesis of other nickel-foamsupported metal oxides as electrodes for LIBs or supercapacitors.


上一条: 冷进论文"Accurate construction of hierarchical nickel-cobalt oxide multishell yolk-shell structure with large and ultrafast lithium storage capability"被Journal of Materials Chemistry A接收发表

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