催化作用
材料科学
过电位
塔菲尔方程
金属
Atom(片上系统)
石墨烯
碳纤维
结晶学
电化学
物理化学
纳米技术
化学
冶金
复合数
电极
有机化学
复合材料
计算机科学
嵌入式系统
作者
Kishwar Khan,Xingxu Yan,Qiangmin Yu,Sang‐Hoon Bae,Jessica Jein White,Junxian Liu,Tangchao Liu,Cheng‐Jun Sun,Jeehwan Kim,Hui–Ming Cheng,Yun Wang,Bilu Liu,Khalil Amine,Xiaoqing Pan,Zhengtang Luo
出处
期刊:Nano Energy
[Elsevier BV]
日期:2021-09-06
卷期号:90: 106488-106488
被引量:96
标识
DOI:10.1016/j.nanoen.2021.106488
摘要
This work aims to obtain a fundamental understanding of active sites near stone-wales (SW) defects rich nitrogen-doped graphene (DG) with specific coordination of carbon atom rings. It reveals that the SW rich defects (e.g., pentagon (5), pentagon—octagon—pentagon (i.e. 585), or pentagon-heptagon-heptagon-pentagon (5775) rings, appears correspondingly with carbon rings that brought active sites during catalytic reactions. Moreover, we anchored dual isolated metallic atoms (Ni/Fe) on DG support via linkers (O/N) called NiFe-DG. X-ray absorption spectroscopy indicates Ni/Fe metal single atoms are embedded via Fe-N4 and Ni-N4 coordination on DG surfaces. It exhibits high catalytic activity for oxygen reduction reaction (ORR) with an onset potential of 0.97 V, a half-wave potential of 0.86 V, and diffusion current density of 5.7 mA cm− 2, which is at par with commercial Pt/C. The catalyst shows superior stability, retained 82% of the initial current density even after 12 h under an applied potential of 0.86 V. Similarly, the oxygen evolution reaction (OER) overpotential of 358 mV was achieved at 10 mA cm− 2 with a lower Tafel slope value (76 mV/dec) than commercial Pt/C. It maintains 85% stability for 12 h at a constant potential of 1.588 V, shows better stability than commercial Pt/C.
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