4.6 Article

Enhanced hydrogen storage properties of MgH2 with numerous hydrogen diffusion channels provided by Na2Ti3O7 nanotubes

期刊

JOURNAL OF MATERIALS CHEMISTRY A
卷 5, 期 13, 页码 6178-6185

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c7ta00566k

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资金

  1. National Natural Science Foundation of China [51671173, 51571179, 51471151, 21303161]
  2. Program for Innovative Research Team in the University of Ministry of Education of China [IRT13037]
  3. Key Science and Technology Innovation Team of Zhejiang Province [2015C31035]
  4. Scientific Research Starting Foundation of Jiangsu University of Science and Technology [1142931607]

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Na2Ti3O7 nanotubes (NTs) with a uniform diameter of 10 nm and Na2Ti3O7 nanorods (NRs) with a diameter of 100-500 nm were synthesized via a hydrothermal method and a solid-state method, respectively, and then introduced into MgH2 by ball milling to catalyze the hydrogenation/dehydrogenation process. The MgH2-Na2Ti3O7 NT and MgH2-Na2Ti3O7 NR composites can desorb 6.5 wt% H-2 within 6 min and 16 min at 300 degrees C, respectively, while the bulk MgH2 hardly releases any hydrogen even over a much longer time. In addition, isothermal rehydrogenation measurements show that the MgH2-Na2Ti3O7 NT composite can absorb 6.0 wt% H-2 within 60 s at 275 degrees C and can even absorb 1.5 wt% H-2 within 30 min at a temperature as low as 50 degrees C. TEM and HRTEM analyses indicate that the Na2Ti3O7 NTs are homogeneously distributed in MgH2, which catalyze the de-/rehydrogenation of MgH2 and meanwhile offer numerous diffusion channels to significantly accelerate the transportation of hydrogen atoms. Moreover, compared with bulk MgH2 and the MgH2-Na2Ti3O7 NR composite, the activation energy of the MgH2-Na2Ti3O7 NT composite is significantly decreased to 70.43 kJ mol(-1). Such Na2Ti3O7 NTs with a unique morphology of the catalyst being distributed as nanotubes in MgH2 are believed to pave the way for the future design of hydrogen storage materials with excellent hydrogen storage performances.

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