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https://dspace.kmf.uz.ua/jspui/handle/123456789/4647
Назва: | Ultrasonic cavitation assisted deposition of catalytically active metals on nitrogen-doped and non-doped carbon nanotubes — A comparative study |
Автори: | Vanyorek László Prekob Ádám Hajdu Viktória Muránszky Gábor Fiser Béla Bela Fiser Фішер Бейло Sikora Emőke Kristály Ferenc Viskolcz Béla |
Ключові слова: | Palladium;Adsorption;Nitrogen doped;Carbon nanotubes |
Дата публікації: | тра-2020 |
Видавництво: | Elsevier |
Вид документа: | dc.type.collaborative |
Бібліографічний опис: | In Journal of Materials Research and Technology. 2020. Volume 9., Issue 3. pp. 4283-4291. |
Серія/номер: | ;Volume 9., Issue 3. |
Короткий огляд (реферат): | Abstract. By applying ultrasonic cavitation, palladium particles were deposited onto the surface of two different types of carbon nanotubes (nitrogen-doped bamboo-shaped carbon nanotubes, N-BCNT and multiwalled carbon nanotubes, MWCNT). To achieve this, palladium ions have been reduced by the adsorbent (N-BCNT or MWCNT) itself. Hydroxyl functional groups were identified on the surface of the MWCNTs, while amine groups have been found on the N-BCNTs. The Zeta potential was lower (−9.8 mv) in the case of the N-BCNT sample, than for MWCNT (−6.1 mV), which was in accordance with their different dispersibility in aqueous phase. The incorporated nitrogen atoms and their oxidized forms within the N-BCNT structure lead to increased adsorption capacity and thus, this type of nanotube is more efficient adsorbent for Pd particles, than MWCNT. The higher adsorption capacity of the N-BCNTs can be explained by the presence of nitrogen atoms which increase the interaction between the Pd and nanotubes. Both Pd/nanotube systems show high catalytic activity (after 30 min – 99% aniline yield) in hydrogenation of nitrobenzene to aniline. Thus, palladium coated carbon nanotubes were synthetized in a one-step reduction procedure, and the produced composites are applicable as catalysts in heterogeneous hydrogenation reactions. |
URI (Уніфікований ідентифікатор ресурсу): | https://dspace.kmf.uz.ua/jspui/handle/123456789/4647 |
ISSN: | 2238-7854 (Print) 2214-0697 (Online) |
metadata.dc.rights.uri: | http://creativecommons.org/licenses/by-nc-nd/3.0/us/ |
Розташовується у зібраннях: | Fiser Béla |
Файли цього матеріалу:
Файл | Опис | Розмір | Формат | |
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Fiser_et_al_Ultrasonic_cavitation_assisted_deposition_2020.pdf | In Journal of Materials Research and Technology. 2020. Volume 9., Issue 3. pp. 4283-4291. | 2.08 MB | Adobe PDF | Переглянути/Відкрити |
Ліцензія на матеріал: Ліцензія Creative Commons