High Fe-Loading Single-Atom Catalyst Boosts ROS Production by Density Effect for Efficient Antibacterial Therapy

被引:0
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作者
Si Chen [1 ,2 ]
Fang Huang [1 ]
Lijie Mao [1 ]
Zhimin Zhang [2 ]
Han Lin [2 ]
Qixin Yan [1 ]
Xiangyu Lu [1 ,3 ]
Jianlin Shi [2 ]
机构
[1] Department of Cardiology, Shanghai Tenth People's Hospital, School of Medicine, Tongji University
[2] Shanghai Institute of Ceramics, Chinese Academy of Sciences
[3] Shanghai Frontiers Science Center of Nanocatalytic Medicine, School of Medicine, Tongji
关键词
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暂无
中图分类号
R914 [药物化学]; O643.36 [催化剂];
学科分类号
100701 ;
摘要
The current single-atom catalysts(SACs) for medicine still suffer from the limited active site density. Here, we develop a synthetic method capable of increasing both the metal loading and mass-specific activity of SACs by exchanging zinc with iron. The constructed iron SACs(h3-FNC) with a high metal loading of 6.27 wt% and an optimized adjacent Fe distance of ~ 4 ? exhibit excellent oxidase-like catalytic performance without significant activity decay after being stored for six months and promising antibacterial effects. Attractively, a “density effect” has been found at a high-enough metal doping amount, at which individual active sites become close enough to interact with each other and alter the electronic structure, resulting in significantly boosted intrinsic activity of single-atomic iron sites in h3-FNCs by 2.3 times compared to low-and medium-loading SACs. Consequently, the overall catalytic activity of h3-FNC is highly improved, with mass activity and metal mass-specific activity that are, respectively, 66 and 315 times higher than those of commercial Pt/C. In addition, h3-FNCs demonstrate efficiently enhanced capability in catalyzing oxygen reduction into superoxide anion(O2·-) and glutathione(GSH) depletion. Both in vitro and in vivo assays demonstrate the superior antibacterial efficacy of h3-FNCs in promoting wound healing. This work presents an intriguing activity-enhancement effect in catalysts and exhibits impressive therapeutic efficacy in combating bacterial infections.
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页码:195 / 211
页数:17
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