Cobalt Nanoparticles Dispersed Nitrogen-Doped Graphitic Nanospheres-Based Rechargeable High Performance Zinc-Air Batteries

被引:14
|
作者
Thakur, Pallavi [1 ]
Yeddala, Munaiah [1 ]
Alam, Khorsed [2 ]
Pal, Shubhadeep [1 ]
Sen, Prasenjit [2 ]
Narayanan, Tharangattu N. [1 ]
机构
[1] Tata Inst Fundamental Res Hyderabad, Hyderabad 500046, Telangana, India
[2] HBNI, Harish Chandra Res Inst, Allahabad 211019, Uttar Pradesh, India
来源
ACS APPLIED ENERGY MATERIALS | 2020年 / 3卷 / 08期
关键词
bifunctional catalysts; zinc-air battery; rechargeable battery; nitrogen-doped carbon; oxygen reduction reaction; oxygen evolution reaction; cobalt nanoparticles; OXYGEN REDUCTION; ELECTROCATALYTIC ACTIVITY; GRAPHENE; OXIDES; CATALYSTS; LITHIUM; FUTURE; RAMAN;
D O I
10.1021/acsaem.0c01200
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The zinc-air battery (ZAB) is an emerging rechargeable energy storage system having high energy density (1084 Wh/kg) with safe operation and low operation cost (similar to$10 kW/h). Development of a durable and efficient bifunctional catalyst is the bottleneck of rechargeable ZAB technology, and here we demonstrate a hybrid catalyst system having cobalt (Co) nanoparticles dispersed graphitic spheres as an efficient catalyst at the air electrode-performing better than the benchmarked ones while constructing the ZAB cells. Co nanoparticles dispersed nitrogendoped graphitic nanospheres (Co@NGC-NSs) were developed using a unique synthesis strategy, and it showed excellent bifunctional catalytic activity toward oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) in alkaline medium. The potential difference calculated with Co@NGC-NSs, considering the potential for the current density of 10 mAcm(-2) for OER and current density corresponding to the half wave potential for ORR, is found to be (0.78 V) lower than that of Pt/C and IrO2 (0.87 V) system. The zinc-air cell constructed using Co@NGC-NSs shows an open circuit voltage of 1.36 V having a maximum power density of similar to 52 mW cm(-2) and an energy density of 876 Wh/kg, and these values are on par with the Pt/C system while much better in terms of long-term stable performance where Pt/C is found to be failing. A detailed comparison with the reported performance of other catalyst-based ZABs indicates that the Co@NGC-NSs-based ZABs has high potential as a practically viable system, where the catalyst development is also found to be simple and nonexpensive in nature.
引用
收藏
页码:7813 / 7824
页数:12
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