Selective oxidation of substituted phenols with Co–N–C catalysts fabricated via low temperature heat treatment

文献信息

发布日期 2023-08-09
DOI 10.1039/D3CY00834G
影响因子 6.119
作者

Bairui Guo, Zhongtian Du, Xiaoyu Shen, Mengjing Han, Yanbin Zhao, Jingjie Luo


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摘要

Co–N–C catalysts were fabricated for efficient oxidation of mono-phenols after undergoing pyrolysis at 250–400 °C. 2,3,6-Trimethylphenol could be facilely oxidized into 2,3,5-trimethyl-1,4-benzoquinone with dioxygen. CoO, Co3O4 or metallic Co particles were excluded as catalytic active species, and active Co(II) species with N/O coordination were dispersed on disordered carbonaceous materials.

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来源期刊

Catalysis Science & Technology

Catalysis Science & Technology
CiteScore: 5.91
自引率: 4.5%
年发文量: 600

Catalysis Science & Technology is committed to publishing research reporting high-quality, cutting-edge developments across the catalysis community at large. The journal places equal focus on publications from the heterogeneous, homogeneous, thermo-, electro-, photo-, organo- and biocatalysis communities. Works published in the journal feature a balanced mix of fundamental, technology-oriented, experimental, computational, digital and data-driven original research, thus appealing to catalysis practitioners in both academic and industrial environments. Original research articles published in the journal must demonstrate new catalytic discoveries and/or methodological advances that represent a significant advance on previously published work, from the molecular to the process scales. We welcome rigorous research in a wide range of timely or emerging applications related to the environment, health, energy and materials. Catalysis Science & Technology publishes Communications, Articles, Reviews and Perspectives. More details regarding manuscript types may be found in the Information for Authors section.

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