2023
DOI: 10.1016/j.ces.2023.118693
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Catalytic performance of copper and ruthenium loaded on N-doped modified PBZ-derived carbons for CO2 hydrogenation

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Cited by 5 publications
(2 citation statements)
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“…However, with the further increase in the nitrogen-doping carbon materials, the Cu sites could be covered, making the Cu reduction more difficult. Donphai et al [131] used PBZ-derived C materials and doped them with different N sources (i.e., ammonia, urea, and arginine). Among the three N sources, arginine led to a decrease in the pore structure and specific surface area of the catalyst, which was not favorable for the loading of active components.…”
Section: Co2 Hydrogenation To Ch3oh Over Nitrogen-doped Carbon Materialsmentioning
confidence: 99%
“…However, with the further increase in the nitrogen-doping carbon materials, the Cu sites could be covered, making the Cu reduction more difficult. Donphai et al [131] used PBZ-derived C materials and doped them with different N sources (i.e., ammonia, urea, and arginine). Among the three N sources, arginine led to a decrease in the pore structure and specific surface area of the catalyst, which was not favorable for the loading of active components.…”
Section: Co2 Hydrogenation To Ch3oh Over Nitrogen-doped Carbon Materialsmentioning
confidence: 99%
“…The unique properties of ruthenium-based compounds make them attractive for a wide range of applications such as catalysis, electronics, energy storage and conversion, turbines of jet engines, supercapacitors, biomedical sectors like biomedicines, etc. [10][11][12][13][14][15][16] Ru and its complexes are mostly utilized in the measurement of ferritin, calcitonin, cyclosporine, and folate levels in the human body for medical diagnosis. 17 Ru-based compounds have also been used in cancer treatment, as they have been found to be effective at killing cancer cells while leaving healthy cells intact.…”
Section: Introductionmentioning
confidence: 99%