4.8 Article

Cost-effective mechanochemical synthesis of highly dispersed supported transition metal catalysts for hydrogen storage

期刊

NANO ENERGY
卷 80, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.nanoen.2020.105535

关键词

Single-atom catalysts; Hydrogen storage; Magnesium dihydride; Ball-milling

资金

  1. National Key Research and Development Program of China [2018YFB1502102]
  2. National Natural Science Foundation of China [51871123]
  3. 111 Project [B12015]
  4. MOE [IRT13R30]

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The research demonstrates a quasi-solid-state template strategy for the synthesis of highly dispersed metal catalysts on nitrogen-doped carbon, successfully applied in MgH2. This method achieves dispersion of metal precursor, evaporation of solvent, downsizing of templates, and successful synthesis of various metal catalysts in a single-step ball-milling process.
Here, we demonstrate a quasi-solid-state template strategy to synthesis highly dispersed supported metal catalysts on nitrogen-doped carbon (M-N-C) with a large fraction of single atom Ni species, in which dispersion of metal precursor, evaporation of solvent and downsizing of templates can be simultaneously achieved during the one-step ball-milling process. The incorporation of such nickel-based catalysts into MgH2 greatly improved the kinetics with the reduced activation energy of 87.2 +/- 5.4 kJ mol(-1) (156.5 +/- 3.2 kJ mol(-1) for blank). The versatility of this method is confirmed by the successful synthesis of the whole series of 3d transition elements (Sc, Ti, V, Cr, Mn, Fe, Co, Ni, Cu and Zn) and La, Ce. The kinetic enhancement of their MgH2 integrated composites lies on these elements' electronegativity which determines the dispersity of metal atoms and the strength of metal-hydrogen interaction.

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