Selective oxidation of substituted phenols with Co–N–C catalysts fabricated via low temperature heat treatment
文献信息
Bairui Guo, Zhongtian Du, Xiaoyu Shen, Mengjing Han, Yanbin Zhao, Jingjie Luo
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.
相关文献
IF 6.222
Palladium-catalyzed silaborative carbocyclizations of 1,6-diynesIF 6.222
Performance of electrode-supported silica membrane separators in lithium-ion batteriesIF 6.367
Highly efficient and durable III–V semiconductor-catalyst photocathodes via a transparent protection layerIF 6.367
An improved fluorescent protein-based expression reporter system that utilizes bioluminescence resonance energy transfer and peptide-assisted complementationIF 6.222
Chemoproteomics-based target profiling of sinomenine reveals multiple protein regulators of inflammationIF 6.222
PEST (political, environmental, social & technical) analysis of the development of the waste-to-energy anaerobic digestion industry in China as a representative for developing countriesIF 6.367
Three-terminal III–V/Si tandem solar cells enabled by a transparent conductive adhesiveIF 6.367
An elemental S/P photocatalyst for hydrogen evolution from water under visible to near-infrared light irradiationIF 6.222
A hollow neuronal carbon skeleton with ultrahigh pyridinic N content as a self-supporting potassium-ion battery anodeIF 6.367
来源期刊
Catalysis Science & Technology

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.