催化作用
降级(电信)
钴
污染
吸附
废水
化学
纳米技术
金属
材料科学
污水处理
碳纳米管
生化工程
氢
选择性
合理设计
机制(生物学)
工业废水处理
环境化学
碳纤维
组合化学
水处理
环境科学
电子供体
电子转移
多相催化
环境修复
污染物
电子
化学工程
作者
Dengzheng Zhang,Qingbai Tian,Yuanfang Wang,Yanbiao Liu,Binrong Li,Yang Zhang,Menglin Zhang,Cong Lyu,Xing Xu
标识
DOI:10.1038/s41467-026-76717-8
摘要
Precisely designed self-driven single-atom catalysts (SACs) can achieve efficient degradation of emerging contaminants (ECs) without oxidants addition, but such systems often exhibited selectivity limited to electron-donating ECs, lacking broad-spectrum degradation capability. To address this limitation, a triple-reaction-center catalyst (Co0/CoN2-SAC) is designed in this study, integrating an electron-deficient region based on carbon framework and an electron-enriched region featuring both metallic cobalt (Co0) and atomically dispersed CoN2 sites. The electron-deficient region facilitates ECs adsorption through π–π interactions, and the CoN2 sites in the electron-enriched region serve as electron acceptors, extracting electrons from electron-donating ECs. While the Co0 sites in the electron-deficient region serve as the electron donor for donating the electron towards electron-withdrawing ECs accompanying with reactive atomic hydrogen (H*) and •OH attacking, enabling efficient reductive degradation of electron-withdrawing ECs. As a result, the Co0/CoN2-SAC system exhibits broad-spectrum degradation capability for both electron-donating and electron-withdrawing ECs, whereas the acid-leached counterpart lacking Co0 shows activity solely toward electron-donating species. Elucidation of this simultaneous oxidation-reduction mechanism provides critical insights for the rational design of adaptive catalytic systems capable of treating complex wastewater matrices, ensuring robust contaminant removal across diverse industrial and municipal water treatment applications. A triple-reaction-center catalyst (Co0/CoN2-SAC) degrades emerging contaminants without oxidants, utilizing electron-deficient and electron-rich sites for simultaneous oxidation-reduction, proving potential for wastewater treatment applications.
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