Surface oxygen vacancies promoted Pt nanoparticles on celery-like CeO2 nanofibers for enhanced sinter-resistance and catalytic performance. (December 2022)
- Record Type:
- Journal Article
- Title:
- Surface oxygen vacancies promoted Pt nanoparticles on celery-like CeO2 nanofibers for enhanced sinter-resistance and catalytic performance. (December 2022)
- Main Title:
- Surface oxygen vacancies promoted Pt nanoparticles on celery-like CeO2 nanofibers for enhanced sinter-resistance and catalytic performance
- Authors:
- Tang, M.
Liu, S.
Fu, W.
Wang, J.
Yin, K.
Zhu, M.
Tian, J.
Sun, Y.
Dai, Y. - Abstract:
- Abstract: Supported metal nanoparticles hold great promise for heterogeneous catalysis but are greatly persecuted by the poor thermal stability upon high temperatures. In this work, we facilely synthesized intriguing celery-like CeO2 nanofibers with high surface areas and hierarchical pores and channels by single-spinneret electrospinning. The nanofibers were explored as reliable support for polyvinylpyrrolidone (PVP)-stabilized Pt nanoparticles, followed by activation at 350 °C in N2 to eliminate PVP stabilizer and generate sufficient surface oxygen vacancies. Therefore, the resultant Pt@CeO2 was endowed with enhanced metal−support interaction and thereby promoted sinter-resistance. In this case, the Pt@CeO2 exhibited over six times higher activity after aging at 600 °C toward the hydrogenation of p -nitrophenol than that of Pt PVP /CeO2 . Moreover, the thermal-stable Pt@CeO2 significantly decreased the activation energy of soot oxidation from 178.0 kJ/mol to 109.4 kJ/mol, due to the abundant oxygen vacancies, as well as the promoted solid–solid contact by the interconnected and celery-like CeO2 nanofibers. After such a sinter-promoting exothermic reaction, the supported Pt nanoparticles maintained a small size of 5.78 nm. This approach provides a facile method to prepare noble metal catalysts with both high atom economy and sinterresistance. Graphical abstract: Oxygen-vacancy-rich celery-like CeO2 nanofibers endowed supported Pt nanoparticles with boosted sinter resistanceAbstract: Supported metal nanoparticles hold great promise for heterogeneous catalysis but are greatly persecuted by the poor thermal stability upon high temperatures. In this work, we facilely synthesized intriguing celery-like CeO2 nanofibers with high surface areas and hierarchical pores and channels by single-spinneret electrospinning. The nanofibers were explored as reliable support for polyvinylpyrrolidone (PVP)-stabilized Pt nanoparticles, followed by activation at 350 °C in N2 to eliminate PVP stabilizer and generate sufficient surface oxygen vacancies. Therefore, the resultant Pt@CeO2 was endowed with enhanced metal−support interaction and thereby promoted sinter-resistance. In this case, the Pt@CeO2 exhibited over six times higher activity after aging at 600 °C toward the hydrogenation of p -nitrophenol than that of Pt PVP /CeO2 . Moreover, the thermal-stable Pt@CeO2 significantly decreased the activation energy of soot oxidation from 178.0 kJ/mol to 109.4 kJ/mol, due to the abundant oxygen vacancies, as well as the promoted solid–solid contact by the interconnected and celery-like CeO2 nanofibers. After such a sinter-promoting exothermic reaction, the supported Pt nanoparticles maintained a small size of 5.78 nm. This approach provides a facile method to prepare noble metal catalysts with both high atom economy and sinterresistance. Graphical abstract: Oxygen-vacancy-rich celery-like CeO2 nanofibers endowed supported Pt nanoparticles with boosted sinter resistance and catalytic performance by the optimized metal–support interaction. Image 1 Highlights: Stabilizing Pt nanoparticles by oxygen-vacancy-rich celery-like CeO2 nanofibers. Optimizing the interaction between metal and support by facile heat treatment. Boosting the activity of Pt@CeO2 toward both hydrogenation and soot oxidation. … (more)
- Is Part Of:
- Materials today nano. Volume 20(2022)
- Journal:
- Materials today nano
- Issue:
- Volume 20(2022)
- Issue Display:
- Volume 20, Issue 2022 (2022)
- Year:
- 2022
- Volume:
- 20
- Issue:
- 2022
- Issue Sort Value:
- 2022-0020-2022-0000
- Page Start:
- Page End:
- Publication Date:
- 2022-12
- Subjects:
- Electrospun nanofibers -- CeO2 -- Pt -- Sinter-resistance -- Oxygen vacancies
Nanoscience -- Periodicals
Nanotechnology -- Periodicals
Nanotechnology
Nanoscience
Nanotechnology -- Periodicals
Periodicals
Periodical
Electronic journals
Electronic journals
620.5 - Journal URLs:
- https://www.sciencedirect.com/journal/materials-today-nano ↗
http://www.sciencedirect.com/ ↗ - DOI:
- 10.1016/j.mtnano.2022.100249 ↗
- Languages:
- English
- ISSNs:
- 2588-8420
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
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- British Library DSC - BLDSS-3PM
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