材料科学
钴
催化作用
介孔材料
对偶(语法数字)
海水
化学工程
碳纤维
自组装
Atom(片上系统)
纳米技术
冶金
复合材料
有机化学
海洋学
复合数
艺术
化学
文学类
计算机科学
工程类
嵌入式系统
地质学
作者
Dongyoon Woo,Jioh Kim,Liangliang Xu,Jinkyu Park,Cheol‐Young Park,Seung Yeop Yi,Seongbeen Kim,Hyunwoo Jun,Seongseop Kim,Jinwoo Lee
标识
DOI:10.1002/adfm.202414749
摘要
Abstract Na‐seawater batteries (SWBs) are environmentally friendly energy storage system that utilizes abundant seawater as an electrolyte alternative to conventional distilled water‐based and organic electrolytes. To achieve high energy efficiency in Na‐SWBs, it is necessary to enhance the activity of bifunctional oxygen electrocatalysts. In this study, an atomically dispersed iron and cobalt dual‐atom nitrogen‐doped lens‐shaped mesoporous carbon (FeCo‐LMC) particles is synthesized as a SWB cathode material using the spinodal decomposition of the polymer blend and selective precursor positioning. The well‐aligned mesoporous structure and synergetic effect of the dual‐atom site realize FeCo‐LMC as a comparable bifunctional oxygen catalyst with the lowest overpotential difference (E OER −E ORR ) among the other catalysts with natural seawater electrolyte. When applied to the SWB system, the FeCo‐LMC shows a highly improved charge/discharge performance compared to Pt/C and a stable cycling performance for 200 h. Density functional theory calculations reveal the enhanced oxygen catalytic activity of FeCo‐LMC owing to electron delocalization and d‐band center adjustment of FeN 4 –CoN 4 structure.
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