化学
单线态氧
催化作用
亚甲蓝
钴
纳米颗粒
光化学
激进的
杂原子
热解
电子顺磁共振
猝灭(荧光)
氧气
核化学
无机化学
光催化
荧光
有机化学
纳米技术
材料科学
物理
量子力学
核磁共振
戒指(化学)
作者
Wei Zhang,Mu Li,Wentao Shang,Mingming Wang,Jianjun Zhang,Feiyun Sun,Mei Li,Xiaoyan Li
标识
DOI:10.1016/j.seppur.2022.122849
摘要
Peroxymonosulfate-based advanced oxidation processes (PMS–based AOPs) catalyzed by cobalt nanoparticles have attracted increasing attention due to their special valence electron structure. In this study, nitrogen-doped carbon-encapsulated Co nanoparticle catalysts with core–shell structure were prepared using a simple pyrolysis method at different pyrolysis temperatures ([email protected], T = 650 °C, 750 °C, 850 °C, and 950 °C). [email protected] exhibited excellent activity and high stability for PMS–based removal of methylene blue (MB). More than 99.9 % of MB was degraded with 20 mg/L [email protected] and 100 mg/L PMS within 10 min, displaying good catalytic performance under a wide pH range (3.0–9.0). The quenching tests and electron spin resonance examination results indicated that nonradical, singlet oxygen (1O2), was the major reactive oxygen species in the [email protected]/PMS system, other than the radicals. Density functional theory analysis verified that the Co nanoparticles contained heteroatoms N in the carbon layers and provided outstanding activity in activating PMS, as well as good stability, reusability, and versatile adaptability. The analysis of intermediates also revealed that the MB degradation pathway. The results obtained in this study may help to elucidate the application of cobalt species in nonradical–dominated AOPs and stimulate the development of efficient and stable cobalt-based catalysts.
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