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A high-performance electrocatalyst for oxygen reduction derived from copolymer-anchored polyoxometalates
被引:0
作者:
Yue Du
Wenxue Chen
Zhiyi Zhong
Zhixian Shi
Yulin Zhang
Xuanning Chen
Yisi Liu
Dongbin Xiong
Lina Zhou
Zhenhui Liu
Mingbo Zheng
机构:
[1] Hubei Normal University,Hubei Key Laboratory of Photoelectric Materials and Devices & College of Material Science and Engineering
[2] Nanjing University of Aeronautics and Astronautics,College of Materials Science and Technology
来源:
Nano Research
|
2024年
/
17卷
关键词:
W;
N;
-WP heterojunctions;
copolymer-anchored polyoxometalates;
oxygen reduction reaction;
Zn-air battery;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
The development and synthesis of cathode electrocatalysts with high activity and durable stability for metal-air batteries is an important challenge in the area of electrocatalysis. Herein, we introduce a novel in-situ nitriding and phosphating strategy for producing W3N4 and WP from phosphotungstic acid (HPW)-polyaniline-phytic acid-Fe3+ organic–inorganic hybrid material. The final material has a three-dimensional porous framework with W3N4-WP heterostructures embedded in the carbon matrix (W3N4-WP@NPC). As-made materials exhibit exceptional electrocatalytic performance for the oxygen reduction reaction (ORR), with a diffusion-limiting current density of 6.9 mA·cm−2 and a half-wave potential of 0.82 V. As a Zn-air primary cathode, the W3N4-WP@NPC assembled battery can provide a relatively high peak power density (194.2 mW·cm−2). As a Zn-air secondary air-cathode, it has great cycling stability over 500 h. This work provides a simple and efficient method for rationally designing high-performance air cathodes from copolymer-anchored polyoxometalates.
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页码:5197 / 5205
页数:8
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