Influence of the Pd : Bi ratio on Pd-Bi/Al2O3 catalysts: structure, surface and activity in glucose oxidation

Pd-Bi nanoparticles show high efficiency in catalyzing gluconic acid production by the glucose oxidation reaction. Although this type of catalyst was studied for some time, the correlation between bismuth content and catalytic activity is still unclear. Moreover, there is little information on the p...

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Опубликовано в: :Physical chemistry chemical physics Vol. 23, № 27. P. 14889-14897
Другие авторы: Sandu, Mariya Petrovna, Kovtunov, Mikhail A., Baturin, Vladimir S., Oganov, Artem R., Kurzina, Irina A.
Формат: Статья в журнале
Язык:English
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Online-ссылка:http://vital.lib.tsu.ru/vital/access/manager/Repository/koha:000895390
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245 1 0 |a Influence of the Pd : Bi ratio on Pd-Bi/Al2O3 catalysts: structure, surface and activity in glucose oxidation  |c M. P. Sandu, M. A. Kovtunov, V. S. Baturin [et al.] 
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520 3 |a Pd-Bi nanoparticles show high efficiency in catalyzing gluconic acid production by the glucose oxidation reaction. Although this type of catalyst was studied for some time, the correlation between bismuth content and catalytic activity is still unclear. Moreover, there is little information on the principles of the formation of Pd-Bi nanoparticles. In this work, the relation between bismuth content and the activity and selectivity of the PdxBiy/Al2O3 catalyst in the glucose oxidation process was studied. The catalytic samples were prepared by co-impregnation of the alumina support utilizing the metal-organic precursors of Pd and Bi. The samples obtained were tested in the glucose oxidation reaction and were studied by transmission electron microscopy (TEM), X-ray fluorescence analysis, X-ray photoelectron spectroscopy (XPS), and BET adsorption. It has been found that the Pd3 : Bi1 atomic ratio grants the highest catalytic efficiency for the studied samples. To explain this, we predicted stable Pd-Bi nanoparticles using ab initio evolutionary algorithm USPEX. The calculations demonstrate that nanoparticles tend to form Pd(core)-Bi(shell) structures turning to a crownjewel morphology at lower Bi concentration, thus exposing the active Pd centers while maintaining the promoting effect of Bi. 
653 |a окисление глюкозы 
653 |a глюконовая кислота 
653 |a наночастицы 
653 |a висмут 
655 4 |a статьи в журналах  |9 879358 
700 1 |a Sandu, Mariya Petrovna  |9 799962 
700 1 |a Kovtunov, Mikhail A.  |9 806065 
700 1 |a Baturin, Vladimir S.  |9 806068 
700 1 |a Oganov, Artem R.  |9 806069 
700 1 |a Kurzina, Irina A.  |9 99208 
773 0 |t Physical chemistry chemical physics  |d 2021  |g Vol. 23, № 27. P. 14889-14897  |x 1463-9076 
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