过电位
氧化还原
析氧
钴
氧气
催化作用
化学
电子转移
分解水
无机化学
过渡金属
GSM演进的增强数据速率
工作(物理)
光化学
材料科学
化学工程
氧还原
电催化剂
辐照
作者
Xin Zhang,Qiyun Wang,Qi Zhang,Haoyin Zhong,Chao Wu,Baorui Jia,Junchen Yu,Ke-Jin Zhou,Yuanjie Li,Yong‐Wei Zhang,Zhi Gen Yu,Shibo Xi,Xiaopeng Wang,Junmin Xue
标识
DOI:10.1038/s41467-026-74386-1
摘要
Abstract Introducing oxygen redox chemistry into cobalt oxyhydroxide effectively enhances catalytic activity by enabling direct O-O coupling, thereby bypassing the rate-limiting * OOH step in the conventional adsorbate evolution mechanism. However, the key challenge is to preserve the accessibility of non-bonding oxygen states while maintaining cobalt-oxygen covalency. Here we show that light irradiation triggers ligand-to-metal charge transfer in sulfur-treated cobalt oxyhydroxide (S-CoOOH), generating non-bonding oxygen states. These states then couple with adjacent ones to form direct O-O bonds. Through this way, the sulfur-treated sample performs enhanced OER activity under light, achieving an overpotential of 194 ± 3 mV at 10 mA cm −2 , which is 41 mV lower than in the dark. Further analysis reveals that light-induced oxygen redox activity is confined to the edge of catalyst. This activity originates from electron transitions from (M-O) to non-overlapping regions of Co 3 d and 4 p orbitals, driven by high-spin Co 3+ at the edge. This work highlights the critical role of light in inducing non-bonding oxygen states in transition metal-based catalysts and guides the development of oxygen-redox electrocatalysts.
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