Yolk shell-structured pyrite-type cobalt sulfide grafted by nitrogen-doped carbon-needles with enhanced electrical conductivity for oxygen electrocatalysis

过电位 塔菲尔方程 电催化剂 化学工程 硫化钴 化学 材料科学 黄铁矿 硫化物 碳纤维 双功能 无机化学 催化作用 电极 冶金 复合材料 有机化学 电化学 物理化学 工程类 复合数
作者
Jiahao Xie,Jin Liu,Bin Liu,Xin Meng,Zhuang Cai,Xiaoqin Xu,Cheng Wang,Shijie You,Jinlong Zou
出处
期刊:Chinese Chemical Letters [Elsevier BV]
卷期号:35 (7): 109236-109236 被引量:4
标识
DOI:10.1016/j.cclet.2023.109236
摘要

Pyrite-type sulfides (PTS) exhibit promising intrinsic activities for oxygen reduction and evolution reactions (ORR/OER). However, their poor electrical conductivities may limit the charge transfer rate to inevitably lower activity. Here, yolk-shell structured cobalt-pyrite nanospheres (CoS2 YSS) are prepared and modified with amino groups as nucleation sites for coupling highly-conductive needle-like nitrogen-doped carbon via a facile solvothermal method (CoS2 YSS@NC). The as-marked CoS2 [email protected] shows a gap between yolk and shell, and an obvious exterior layer of grafted NC, which can provide an integrated structure, an interior place, and three exposed surfaces on CoS2. CoS2 [email protected] reveals higher ORR activity (half-wave potential of 0.88 V) and methanol resistance than commercial Pt/C. Due to in-situ formation of highly-active CoOOH, CoS2 [email protected] shows a better overpotential (244 mV at 10 mA/cm2) and Tafel slope (135 mV/dec) than RuO2. Zinc-air battery with CoS2 [email protected] air-cathode exhibits good open circuit potential (1.44 V), specific capacity (772.5 mAh/g) and cycling stability. Needle-like NC layer coated on the yolk-shell structure of CoS2 effectively lowers the charge transfer resistance to obtain extraordinary ORR/OER activities. It indicates that the integration of highly-conductive carbon onto pyrite-type sulfides is an effective strategy to acquire durable bifunctional ORR/OER catalysts.
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