Bimetallic non-noble CoNi nanoparticles monodispersed on multiwall carbon nanotubes: Highly efficient hydrolysis of ammonia borane

Bimetallic non-noble CoNi nanoparticles have been successfully supported on multiwall carbon nanotubes. The ultrafine CoNi nanoparticles with particle size of 2 nm are monodispersed on multiwall carbon nanotubes surface. The synergistic effect between Co and Ni plays an important role in enhancement...

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Veröffentlicht in:Materials chemistry and physics 2018-01, Vol.204, p.58-61
Hauptverfasser: Wang, Qingtao, Zhang, Zhang, Liu, Jin, Liu, Renchen, Liu, Tong
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container_title Materials chemistry and physics
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creator Wang, Qingtao
Zhang, Zhang
Liu, Jin
Liu, Renchen
Liu, Tong
description Bimetallic non-noble CoNi nanoparticles have been successfully supported on multiwall carbon nanotubes. The ultrafine CoNi nanoparticles with particle size of 2 nm are monodispersed on multiwall carbon nanotubes surface. The synergistic effect between Co and Ni plays an important role in enhancement for ammonia borane hydrolysis. In addition, the support effect could also efficiently improve the catalytic performance. Compared to the other support, the synthesized Co0.7Ni0.3/MCNTs shows excellent catalytic performance with TOF of 128 molH2 molcat−1 min−1 at 323 K. Interestingly, the prepared nanocatalysts also possess high durability in ammonia borane hydrolysis. [Display omitted] •Non-noble CoNi NPs assembled on multiwall carbon nanotubes (MCNTs) were prepared.•The monodispersed CoNi NPs with a diameter of 2 nm can be readily obtained.•Synergistic effect can significantly enhance the catalytic activity.
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subjects Ammonia
Ammonia borane hydrolysis
Bimetals
Catalysis
Chemical synthesis
CoNi nanoparticles
Heterogeneous catalysis
Hydrolysis
Multi wall carbon nanotubes
Multiwall carbon nanotubes
Nanoparticles
Nanotubes
Studies
Synergistic effect
title Bimetallic non-noble CoNi nanoparticles monodispersed on multiwall carbon nanotubes: Highly efficient hydrolysis of ammonia borane
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