Non-bonding modulations between single atomic cerium and monodispersed selenium sites towards efficient oxygen reduction

被引:0
作者
Leilei Yin
Shuai Zhang
Mingzi Sun
Siyuan Wang
Bolong Huang
Yaping Du
机构
[1] Nankai University,Tianjin Key Lab for Rare Earth Materials and Applications, Center for Rare Earth and Inorganic Functional Materials, Haihe Laboratory of Sustainable Chemical Transformations, Smart Sensing Interdisciplinary Science Center, School of Mater
[2] The Hong Kong Polytechnic University,Department of Applied Biology and Chemical Technology
[3] Hung Hom,Research Centre for Carbon
[4] The Hong Kong Polytechnic University,Strategic Catalysis
[5] Hung Hom,undefined
来源
Nano Research | 2024年 / 17卷
关键词
catalyst; rare earth; oxygen reduction reaction (ORR); metalloid; non-bonding modulation;
D O I
暂无
中图分类号
学科分类号
摘要
Currently, dual atomic catalysts (DACs) with neighboring active sites for oxygen reduction reaction (ORR) still meet lots of challenges in the synthesis, especially the construction of atomic pairs of elements from different blocks of the periodic table. Herein, a “rare earth (Ce)-metalloid (Se)” non-bonding heteronuclear diatomic electrocatalyst has been constructed for ORR by rational coordination and carbon support defect engineering. Encouraging, the optimized Ce−Se diatomic catalysts (Ce−Se DAs/NC) displayed a half-wave potential of 0.886 V vs. reversible hydrogen electrode (RHE) and excellent stability, which surpass those of separate Ce or Se single atoms and most single/dual atomic catalysts ever reported. In addition, a primary zinc-air battery constructed using Ce−Se DAs/NC delivers a higher peak power density (209.2 mW·cm−2) and specific capacity (786.4 mAh·gZn−1) than state-of-the-art noble metal catalysts Pt/C. Theoretical calculations reveal that the Ce−Se DAs/NC has improved the electroactivity of the Ce−N4 region due to the electron transfer towards the nearby Se specific activity (SA) sites. Meanwhile, the more electron-rich Se sites promote the adsorptions of key intermediates, which results in the optimal performances of ORR on Ce−Se DAs/NC. This work provides new perspectives on electronic structure modulations via non-bonded long-range coordination micro-environment engineering in DACs for efficient electrocatalysis.
引用
收藏
页码:4753 / 4763
页数:10
相关论文
共 379 条
[1]  
Huang Y C(2019)Heterojunction architecture of N-doped WO Adv. Funct. Mater 29 1903490-193
[2]  
Guo Z J(2022) nanobundles with Ce Adv. Funct. Mater 32 2112738-4553
[3]  
Liu H(2019)S Appl. Catal. B Environ. 254 186-4563
[4]  
Zhang S Q(2017) nanodots hybridized on a carbon textile enables a highly efficient flexible photocatalyst Adv. Mater. 29 1604685-3657
[5]  
Wang P S(2019)Charge relays via dual carbon-actions on nanostructured BiVO Adv. Mater. 31 1805230-7778
[6]  
Lu J(2022) for high performance photoelectrochemical water splitting Energy Environ. Sci. 15 4542-5999
[7]  
Tong Y X(2020) embedding Co Energy Environ. Sci. 13 4536-6506
[8]  
Wang Y X(2022)S Angew. Chem., Int. Ed. 61 e202116068-5450
[9]  
Chen D M(2016) into nitrogen and sulfur codoped hollow porous carbon as a bifunctional electrocatalyst for oxygen reduction and hydrogen evolution reactions Chem. Rev. 116 3594-17592
[10]  
Zhang J N(2021)Electrically rechargeable zinc-air batteries: Progress, challenges, and perspectives Chem. Soc. Rev. 50 7745-1961