Розкладання органічних пероксидів вуглецевими наноматеріалами в неводному середовищі
The stability of benzoyl and lauroyl peroxide solutions in different solvents was investigated. Catalytic activity of nanoporous (natural KAU and synthetic SKN activated carbon) and nanoscale (carbon nanotubes) carbon materials and their modified (oxidized and nitrogencontaining) form in comparison...
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| Date: | 2015 |
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| Author Affiliations: |
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| Keywords: | keywords |
| Main Authors: | , , , , |
| Format: | Article |
| Language: | Ukrainian |
| Published: |
Chuiko Institute of Surface Chemistry National Academy of Sciences of Ukraine
2015
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| Online Access: | https://surfacezbir.com.ua/index.php/surface/article/view/588 |
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| Journal Title: | Surface |
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Surface| Summary: | The stability of benzoyl and lauroyl peroxide solutions in different solvents was investigated. Catalytic activity of nanoporous (natural KAU and synthetic SKN activated carbon) and nanoscale (carbon nanotubes) carbon materials and their modified (oxidized and nitrogencontaining) form in comparison with the activity of the enzyme catalase in the model reaction of organic peroxides decomposition by calculating the Michaelis constants from peroxides decomposition kinetics data was determined. It was shown that carbon nanomaterials exhibit high catalytic ability in non-aqueous media. It was found that a catalytic activity of tested samples correlated with changes in surface chemistry, namely its basicity, and the presence of quaternary nitrogen in the carbon nanomaterial structure. |
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