钴
普鲁士蓝
材料科学
催化作用
激进的
化学工程
人体净化
工作职能
金属
硫酸盐
化学
环境修复
降级(电信)
纳米技术
过渡金属
碳纤维
复合数
污染
复合材料
冶金
电化学
有机化学
废物管理
物理化学
计算机科学
生态学
电信
电极
工程类
生物
作者
Xiaoguang Duan,Jian Kang,Wenjie Tian,Huayang Zhang,Shih‐Hsin Ho,Yi‐An Zhu,Zhimin Ao,Hongqi Sun,Shaobin Wang
标识
DOI:10.1016/j.apcatb.2019.117795
摘要
Efficient water remediation relies on robust and capable catalysts to drive the cutting-edge purification technologies. In this work, Prussian blue analogues (PBA) are engaged as the starting materials to fabricate various transition metal (TM)@carbon composites for water decontamination. The encapsulated metallic cobalt is unveiled to be more favorable to deliver electrons to the adjacent carbons than CoP and Co3O4, due to the low work function, high conductivity and formation of multiple Co-C bonds for electron tunnelling. Such a hybrid structure significantly tailors the electron density of the carbon lattice, which is the decisive factor influencing activating peroxymonosulfate (PMS) to generate highly reactive sulfate radicals for degradation of contaminants, meanwhile achieving outstanding long-term stability. Deliberate material design and theoretical computations unveil the structure-activity regimes of the composite materials in promoted carbocatalysis. This proof-of-concept study dedicates to elucidating the principles in developing fine-tuned and high-performance [email protected] hybrids for advanced catalytic oxidation.
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