扫描手机二维码

欢迎您的访问
您是第 位访客

开通时间:..

最后更新时间:..

  • 王治宇 ( 教授 )

    的个人主页 http://faculty.dlut.edu.cn/zywang/zh_CN/index.htm

  •   教授   博士生导师   硕士生导师
论文成果 当前位置: 王治宇 >> 科学研究 >> 论文成果
Boosting electrocatalytic oxygen evolution by synergistically coupling layered double hydroxide with MXene

点击次数:
论文类型:期刊论文
发表时间:2018-02-01
发表刊物:NANO ENERGY
收录刊物:ESI高被引论文、SCIE、EI
卷号:44
页面范围:181-190
ISSN号:2211-2855
关键字:MXene; Layered double hydroxide; Nanohybrids; Electrocatalyst; Oxygen evolution reaction
摘要:Oxygen evolution reaction (OER) is cornerstone reaction of many renewable energy technologies. Cost-effective yet efficient electrocatalysts are critical to overcome the high overpotential and sluggish kinetics of this process. The development of efficient non-precious metal catalysts is one of the crucial but very challenging steps to this end. Herein, we report a new type of non-precious metal electrocatalyst for OER by synergistically coupling layered double hydroxides (LDH) with two-dimensional (2D) MXene with high conductivity and active surface. Hierarchical FeNi-LDH/Ti3C2-MXene nanohybrids with excellent structural stability, electrical properties and interfacial junction are fabricated by ionic hetero-assembly of interconnected porous network of FeNi-LDH nanoplates on Ti3C2 MXene nanosheets. Strong interfacial interaction and electronic coupling with prominent charge-transfer between the FeNi-LDH and Ti3C2 MXene is identified, which not only improves the structural stability and electrical conductivity of the nanohybrids, but also greatly accelerates the redox process of FeNi-LDH for OER. As a result, the FeNi-LDH/Ti3C2-MXene catalyst could exhibit superior activity, reaction kinetics and durability to RuO2 and its graphene-based counterpart for OER in alkaline medium. This work may pave the way on the development of a new branch of advanced electrocatalysts for renewable energy applications.

 

辽ICP备05001357号 地址:中国·辽宁省大连市甘井子区凌工路2号 邮编:116024
版权所有:大连理工大学