Boron-Insertion-Induced Lattice Engineering of Rh Nanocrystals Toward Enhanced Electrocatalytic Conversion of Nitric Oxide to Ammonia
Peng Han Qiyuan He Zhiyuan Zeng Jinlan Wang Dong Su Chongyi Ling Zhengxiang Gu Ye Chen Xiangou Xu Weiwei Chen Long Zheng Chen Ma Gang Wang Lei Xu Ping Gu Wenbin Wang
Boron-Insertion-Induced Lattice Engineering of Rh Nanocrystals Toward Enhanced Electrocatalytic Conversion of Nitric Oxide to Ammonia
Boron-Insertion-Induced Lattice Engineering of Rh Nanocrystals Toward Enhanced Electrocatalytic Conversion of Nitric Oxide to Ammonia
摘要
关键词
Lattice engineering of nanomaterials/Phase engineering of nanomaterials/Wet-chemical synthesis/Metal nanocatalysts/Nitric oxide reduction reaction/Electrocatalytic ammonia synthesisKey words
Lattice engineering of nanomaterials/Phase engineering of nanomaterials/Wet-chemical synthesis/Metal nanocatalysts/Nitric oxide reduction reaction/Electrocatalytic ammonia synthesis引用本文复制引用
Peng Han,Qiyuan He,Zhiyuan Zeng,Jinlan Wang,Dong Su,Chongyi Ling,Zhengxiang Gu,Ye Chen,Xiangou Xu,Weiwei Chen,Long Zheng,Chen Ma,Gang Wang,Lei Xu,Ping Gu,Wenbin Wang..Boron-Insertion-Induced Lattice Engineering of Rh Nanocrystals Toward Enhanced Electrocatalytic Conversion of Nitric Oxide to Ammonia[J].纳微快报(英文),2026,18(3):85-102,18.基金项目
YC acknolwedges the funding support from General Research Fund[Project No.14300525]from the Research Grants Council(RGC)of Hong Kong SAR,China.The authors acknowledge the funding support from Natural Science Foundation of China(NSFC)Young Scientists Fund(Project No.22305203)and NSFC Projects Nos.22309123,22422303,22303011,22033002,92261112 and U21A20328.YC thanks the support from the Hong Kong Branch of National Precious Metals Material Engineering Research Center(NPMM)at City University of Hong Kong.The authors thank the computational resources from the Big Data Computing Center of Southeast University.YC and ZZ thank the support from Young Collaborative Research Grant[Project No.C1003-23Y]support from RGC of Hong Kong SAR,China. (RGC)