Zhihao PeiXue Feng LuHuabin ZhangYunxiang LiDeyan LuanXiong Wen Lou
Abstract Single‐atom catalysts (SACs) are being pursued as economical electrocatalysts. However, their low active‐site loading, poor interactions, and unclear catalytic mechanism call for significant advances. Herein, atomically dispersed Ni/Co dual sites anchored on nitrogen‐doped carbon (a‐NiCo/NC) hollow prisms are rationally designed and synthesized. Benefiting from the atomically dispersed dual‐metal sites and their synergistic interactions, the obtained a‐NiCo/NC sample exhibits superior electrocatalytic activity and kinetics towards the oxygen evolution reaction. Moreover, density functional theory calculations indicate that the strong synergistic interactions from heteronuclear paired Ni/Co dual sites lead to the optimization of the electronic structure and the reduced reaction energy barrier. This work provides a promising strategy for the synthesis of high‐efficiency atomically dispersed dual‐site SACs in the field of electrochemical energy storage and conversion.
Zhihao PeiXue Feng LuHuabin ZhangYunxiang LiDeyan LuanXiong Wen Lou
Zhihao PeiHuabin ZhangZhi‐Peng WuXue Feng LuDeyan LuanXiong Wen Lou
Yaoyao DengYao LinMinxi ZhangRentong DaiZhen LuoQuanfa ZhouMei XiangJirong BaiShuanglong Lu
Huanyan LiuMingxin GaoWeidong ChengZhongnan LingShuming ZhouSangseok YuJiankang LiuZhongjun ChenGuang MoXuehui WuZhonghua WuYaguang PengXinchen KangBuxing HanXueqing Xing
Xiangnan WangWeiwen WangTianping WangZhen ZhangXikui Liu