Ru-N-C Hybrid Nanocomposite for Ammonia Dehydrogenation: Influence of N-doping on Catalytic Activity
- Authors
- Nguyen Thi Bich Hien; Kim, Hyo Young; Jeon, Mina; Lee, Jin Hee; Ridwan, Muhammad; Tamarany, Rizcky; Yoon, Chang Won
- Issue Date
- 2015-06
- Publisher
- MDPI
- Citation
- MATERIALS, v.8, no.6, pp.3442 - 3455
- Abstract
- For application to ammonia dehydrogenation, novel Ru-based heterogeneous catalysts, Ru-N-C and Ru-C, were synthesized via simple pyrolysis of a mixture of RuCl(3)6H(2)O and carbon black with or without dicyandiamide as a nitrogen-containing precursor at 550 degrees C. Characterization of the prepared Ru-N-C and Ru-C catalysts via scanning transmission electron microscopy, in conjunction with energy dispersive X-ray spectroscopy, indicated the formation of hollow nanocomposites in which the average sizes of the Ru nanoparticles were 1.3 nm and 5.1 nm, respectively. Compared to Ru-C, the Ru-N-C nanocomposites not only proved to be highly active for ammonia dehydrogenation, giving rise to a NH3 conversion of >99% at 550 degrees C, but also exhibited high durability. X-ray photoelectron spectroscopy revealed that the Ru active sites in Ru-N-C were electronically perturbed by the incorporated nitrogen atoms, which increased the Ru electron density and ultimately enhanced the catalyst activity.
- Keywords
- COX-FREE HYDROGEN; OXYGEN REDUCTION REACTION; PARTICLE-SIZE; STORAGE; DECOMPOSITION; METAL; GENERATION; HYDROLYSIS; INTERFACE; GRAPHENE; COX-FREE HYDROGEN; OXYGEN REDUCTION REACTION; PARTICLE-SIZE; STORAGE; DECOMPOSITION; METAL; GENERATION; HYDROLYSIS; INTERFACE; GRAPHENE; Ru-N-C; ammonia; dehydrogenation; N-doping; hollow graphitic structure; fuel cell
- ISSN
- 1996-1944
- URI
- https://pubs.kist.re.kr/handle/201004/125352
- DOI
- 10.3390/ma8063442
- Appears in Collections:
- KIST Article > 2015
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