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In-situ synthesis of hybrid nickel cobalt sulfide/carbon nitrogen nanosheet composites as highly efficient bifunctional oxygen electrocatalyst for rechargeable Zn-air batteries
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In-situ synthesis of hybrid nickel cobalt sulfide/carbon nitrogen nanosheet composites as highly efficient bifunctional oxygen electrocatalyst for rechargeable Zn-air batteries

Jin-Zhong He, Wen-Jun Niu, Ya-Ping Wang, Qiao-Qiao Sun, Ming-Jin Liu, Kuangye Wang, Wen-Wu Liu, Mao-Cheng Liu, Fu-Cheng YuYu-Lun Chueh
Electrochimica Acta, 卷.362, 136968
12/2020

摘要

Electrocatalyst NiCo2S4/CNNs composites Oxygen evolution reaction Oxygen reduction reaction Zn-air batteries Chemical Engineering (all) Electrochemistry
In this work, an in-situ synthetic, pyrolytic and carbonized method is elaborately demonstrated to prepare the nickel cobalt sulphide (NiCo 2 S 4 ) nanoparticles (NPs)/carbon nitrogen nanosheets (CNNs) composites as a highly efficient bifunctional oxygen electrocatalyst for rechargeable Zn-air batteries (ZABs). Specifically, the in-situ synthesized NiCo 2 S 4 NPs confined in cages of CNNs create a well-defined electron transfer hetero-interface with more exposed active sites. The combined NiCo 2 S 4 NPs with the CNNs generate a synergistic effect, which provides effective electron transfer pathways to enhance the electrocatalytic behaviors, yielding a more positive half-wave potential (0.83 V) for oxygen reduction reaction (ORR) and a lower overpotential (360 mV at 10 mA cm −2 ) for oxygen evolution reaction (OER). As a proof of concept, the equipped ZABs exhibit a high peak power density of 92 mW cm −2 and a superior energy density of 1025 Wh kg −1 with robust cycling stability over 1000 cycles for 180 h, which are better than that of a commercially available Pt/C-RuO 2 catalyst. The findings highlight the practical viability of the NiCo 2 S 4 /CNNs composites in rechargeable ZABs and provide a new approach for the efficient synthesis of bifunctional oxygen electrocatalyst in the future.

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