材料科学
超临界流体
正交晶系
产量(工程)
法拉第效率
催化作用
无定形固体
电化学
化学工程
过氧化氢
电催化剂
氧气
析氧
超临界二氧化碳
无定形碳
二氧化碳
可逆氢电极
工作(物理)
空位缺陷
无机化学
碳纤维
氢
氧化还原
动力学
化学
作者
Lei Xu,Ruisi Tao,Qun Xu,Buxing Han
摘要
ABSTRACT The electrochemical two electron water oxidation reaction (2e‐WOR) offers a promising route for hydrogen peroxide (H 2 O 2 ) production, but its efficiency is limited by the lack of high performance electrocatalysts. Herein, we report a supercritical carbon dioxide (SC CO 2 ) modulation strategy to synergistically engineer surface amorphization and oxygen vacancy (O V ) defects in orthorhombic CaSnO 3 . Under an optimal SC CO 2 pressure of 16 MPa, the treated CaSnO 3 exhibits a partially amorphized surface, abundant O V , and concomitant Sn 3+ defects. These features collectively increase unsaturated coordination sites, accelerate interfacial charge transfer, and lower the reaction overpotential. Consequently, the optimal catalyst achieves a H 2 O 2 production rate of 26.6 µmol cm− 2 min −1 , a Faradaic efficiency (FE) of 82% at 2.9 V versus RHE, and a cumulative yield over 300 min approximately eight times that of pristine CaSnO 3 , with stable operation for 24 h. This work demonstrates that SC CO 2 treatment is an effective tool to construct defect coupled surface amorphous regions, providing a new paradigm for designing high ‐ performance 2e‐WOR electrocatalysts for green H 2 O 2 synthesis.
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