Journal
JOURNAL OF MATERIALS CHEMISTRY A
Volume 5, Issue 20, Pages 9946-9951Publisher
ROYAL SOC CHEMISTRY
DOI: 10.1039/c7ta01982c
Keywords
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Funding
- Science and Technology Commission of Shanghai Municipality [14DZ2261000]
- Max Planck Society
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Nanoscale NiO/Ni heterostructures on oxygen-functionalized carbon nanotubes with low Ni loading (3-4 wt%) are fabricated by delicate thermal-annealing treatments, which are designed according to the temperature-programmed thermal analysis. Activity and stability tests demonstrate that NiO/Ni heterostructures with a stable Ni core inside an oxyhydroxide shell (in solution) exhibit enhanced stability and catalytic activity for methanol oxidation.
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