Rational Design of Carbon Layer-Decorated Metal Oxide/Nickel Cobalt Sulfide-Based Composite with Faster Energy Storage and Long Cyclic Life

2021 ◽  
Vol 4 (3) ◽  
pp. 2138-2147
Author(s):  
Dandan Han ◽  
Yifan Pan ◽  
Jinhe Wei ◽  
Liucheng Mao ◽  
Ye Shen ◽  
...  
2016 ◽  
Vol 4 (1) ◽  
pp. 1600214 ◽  
Author(s):  
Guanjie He ◽  
Mo Qiao ◽  
Wenyao Li ◽  
Yao Lu ◽  
Tingting Zhao ◽  
...  

2015 ◽  
Vol 51 (52) ◽  
pp. 10494-10497 ◽  
Author(s):  
Narendra Kurra ◽  
Chuan Xia ◽  
M. N. Hedhili ◽  
H. N. Alshareef

Ternary nickel cobalt sulfide micro-pseudocapacitors exhibit superior electrochemical performance over binary sulfide micro-electrodes reported in the literature.


2016 ◽  
Vol 4 (47) ◽  
pp. 18335-18341 ◽  
Author(s):  
Zhenhu Li ◽  
Xu Li ◽  
Lu Xiang ◽  
Xiong Xie ◽  
Xue Li ◽  
...  

Novel 3D hierarchical holey (Co, Ni)3S2 nanostructures are fabricated and exhibit outstanding comprehensive performance as electrodes for electrochemical energy storage.


2018 ◽  
Vol 283 ◽  
pp. 1245-1252 ◽  
Author(s):  
Jia-Wen Cheng ◽  
Lu-Yin Lin ◽  
Wei-Lun Hong ◽  
Lu-Ying Lin ◽  
Hong-Qin Chen ◽  
...  

2020 ◽  
Vol 8 (45) ◽  
pp. 24053-24064
Author(s):  
Ling Kang ◽  
Mengyao Zhang ◽  
Jian Zhang ◽  
Shude Liu ◽  
Nan Zhang ◽  
...  

Nickel cobalt sulfide (NiCo2S4) is a promising battery-type material for electrochemical energy storage.


2019 ◽  
Vol 11 (1) ◽  
Author(s):  
Jingyan Zhang ◽  
Xiaowan Bai ◽  
Tongtong Wang ◽  
Wen Xiao ◽  
Pinxian Xi ◽  
...  

Abstract The development of efficient earth-abundant electrocatalysts for oxygen reduction, oxygen evolution, and hydrogen evolution reactions (ORR, OER, and HER) is important for future energy conversion and energy storage devices, for which both rechargeable Zn–air batteries and water splitting have raised great expectations. Herein, we report a single-phase bimetallic nickel cobalt sulfide ((Ni,Co)S2) as an efficient electrocatalyst for both OER and ORR. Owing to the synergistic combination of Ni and Co, the (Ni,Co)S2 exhibits superior electrocatalytic performance for ORR, OER, and HER in an alkaline electrolyte, and the first principle calculation results indicate that the reaction of an adsorbed O atom with a H2O molecule to form a *OOH is the potential limiting step in the OER. Importantly, it could be utilized as an advanced air electrode material in Zn–air batteries, which shows an enhanced charge–discharge performance (charging voltage of 1.71 V and discharge voltage of 1.26 V at 2 mA cm−2), large specific capacity (842 mAh gZn−1 at 5 mA cm−2), and excellent cycling stability (480 h). Interestingly, the (Ni,Co)S2-based Zn–air battery can efficiently power an electrochemical water-splitting unit with (Ni,Co)S2 serving as both the electrodes. This reveals that the prepared (Ni,Co)S2 has promising applications in future energy conversion and energy storage devices.


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