Direct transformation of bulk cobalt foam into cobalt nanoparticles encapsulated in nitrogen-doped carbon nanotubes for peroxymonosulfate activation toward rhodamine B degradation

被引:63
作者
Cheng, Jiaxing [1 ]
Wei, Niyi [1 ]
Wang, Yi [1 ]
Long, Yan [1 ]
Fan, Guangyin [1 ]
机构
[1] Sichuan Normal Univ, Coll Chem & Mat Sci, Chengdu 610066, Peoples R China
基金
中国国家自然科学基金;
关键词
Encapsulated cobalt nanoparticles; Nitrogen doping; carbon nanotubes; Peroxymonosulfate; Sulfate radical; Singlet oxygen; HIERARCHICALLY POROUS CARBON; BISPHENOL-A; EFFICIENT DEGRADATION; ORGANIC CONTAMINANTS; SINGLET OXYGEN; REMOVAL; PERSULFATE; OXIDATION; DYE; PERFORMANCE;
D O I
10.1016/j.seppur.2021.119441
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Supported cobalt (Co)-based materials have attracted widely attention owing to their effectiveness in activating peroxymonosulfate (PMS) for remediation of organic pollutants. Nevertheless, traditional synthetic strategies for these materials usually need complex steps and lack suitable interaction between Co and support. Herein, we develop a simple, convenient, and straightforward approach to prepare encapsulated Co nanoparticles (NPs) through direct atom emitting from Co foam, and subsequent trapping on nitrogen-doped carbon nanotubes (NCNT) with the aid of melamine. The as-prepared Co/NCNT can be used as an excellent catalytic material for PMS activation to efficiently degrade rhodamine B (RhB), among which the Co/NCNT-700 exhibits the optimal performance (rate constant:1.561 min(-1)). This magnetic material can be easily isolated and reused for five times with high removal efficiency. The quenching tests and electron spin resonance (ESR) characterization unveil the catalytical mechanisms of sulfate radical (SO4 center dot-) and singlet oxygen (O-1(2)) for RhB degradation. Combined with XPS analysis and other characterization findings, pyridinic nitrogen, sp(2)-hybrid carbon, ketonic groups, and Co species are the possible catalytic active sites of Co/NCNT-700. This approach is easily scalable and has been verified as a feasible way for synthesizing metal-carbon materials toward efficient degradation of organic pollutants in complex water systems.
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页数:12
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