Co3O4 nanoparticle-dotted hierarchical-assembled carbon nanosheet framework catalysts with the formation/decomposition mechanisms of Li2O2 for smart lithium-oxygen batteries

被引:80
|
作者
Zhai, Yanjie [1 ]
Yang, Wenyue [1 ]
Xie, Xiubo [1 ]
Sun, Xueqin [1 ]
Wang, Jun [2 ]
Yang, Xiaoyang [1 ]
Naik, Nithesh [3 ]
Kimura, Hideo [1 ]
Du, Wei [1 ]
Guo, Zhanhu [4 ]
Hou, Chuanxin [1 ]
机构
[1] Yantai Univ, Sch Environm & Mat Engn, 30 Qingquan Rd, Yantai 264005, Shandong, Peoples R China
[2] Shandong Univ, Key Lab Liquid Solid Struct Evolut & Proc Mat, Minist Educ, Jinan 250061, Peoples R China
[3] Manipal Acad Higher Educ, Manipal Inst Technol, Dept Mech & Mfg Engn, Manipal 576104, Karnataka, India
[4] Univ Tennessee, Dept Chem & Biomol Engn, Integrated Composites Lab ICL, Knoxville, TN 37996 USA
关键词
HIGH-PERFORMANCE CATHODE; BINDER-FREE CATHODE; HIGHLY EFFICIENT; GRAPHENE; COMPOSITES; CO;
D O I
10.1039/d1qi01260f
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Li-O-2 batteries (LOBs) have been regarded as promising candidates for the next generation of electric vehicles owing to their excellent energy density. Nevertheless, the practical application of LOBs with a sensible cathode material has largely been blocked due to their low-activity catalysts and inefficient product evolution. Combining carbon and metal oxide is one of the most effective strategies to realize the high capacity and lower overpotential for boosting the Li-O-2 battery performance. Herein, cobalt oxide (Co3O4) nanoparticle-dotted hierarchical-assembled carbon nanosheet frameworks (Co3O4-HCNFs) were fabricated using a facile two-step carbonization-calcined route and applied as high-efficiency electrochemical catalysts for Li-O-2 batteries. Co3O4 has been proved to be effective for the full composition/decomposition of generated Li2O2 thin films during the oxygen reduction reaction process (ORR) and the oxygen evolution reaction process (OER). Furthermore, the cobalt oxide nanoparticle-dotted hierarchical-assembled carbon nanosheet frameworks satisfy the relevant requirements including controlled morphology and efficient volume change accommodation, which delivered a high-performance with a large specific capacity of 14 949 mA h g(-1) and superior cycling stability with 180 cycles. This study designs a smart strategy with high-performance Co3O4 cathodes for Li-O-2 batteries and the composition/decomposition mechanisms of Li2O2 films, showing a favorable method for recomposing the future design of Co3O4-based advanced energy materials.
引用
收藏
页码:1115 / 1124
页数:10
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