异质结
铁磁性
反铁磁性
顺磁性
磁化
材料科学
居里温度
析氧
氧气
凝聚态物理
磁性半导体
纳米技术
磁场
化学物理
化学
光电子学
物理化学
物理
电极
量子力学
电化学
有机化学
作者
Ziren Xiong,Ce Hu,Xingfang Luo,Wenda Zhou,Zhenzhen Jiang,Yong Yang,Ting Yu,Wen Lei,Cailei Yuan
出处
期刊:Nano Letters
[American Chemical Society]
日期:2021-12-03
卷期号:21 (24): 10486-10493
被引量:54
标识
DOI:10.1021/acs.nanolett.1c03981
摘要
Ferromagnetic (FM) electrocatalysts have been demonstrated to reduce the kinetic barrier of oxygen evolution reaction (OER) by spin-dependent kinetics and thus enhance the efficiency fundamentally. Accordingly, FM two-dimensional (2D) materials with unique physicochemical properties are expected to be promising oxygen-evolution catalysts; however, related research is yet to be reported due to their air-instabilities and low Curie temperatures (TC). Here, based on the synthesis of 2D air-stable FM Cr2Te3 nanosheets with a low TC around 200 K, room-temperature ferromagnetism is achieved in Cr2Te3 by proximity to an antiferromagnetic (AFM) CrOOH, demonstrating the accomplishment of long-ranged FM ordering in Cr2Te3 because the magnetic proximity effect stems from paramagnetic (PM)/AFM heterostructure. Therefore, the OER performance can be permanently promoted (without applied magnetic field due to nonvolatile nature of spin) after magnetization. This work demonstrates that a representative PM/AFM 2D heterostructure, Cr2Te3/CrOOH, is expected to be a high-efficient magnetic heterostructure catalysts for oxygen-evolution.
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