Remarkably fast low-temperature hydrogen storage into aromatic benzyltoluenes over MgO-supported Ru nanoparticles with homolytic and heterolytic H-2 adsorption

  • Kim, Tae Wan
  • Kim, Minseok
  • Kim, Seok Ki
  • Choi, Yong Nam
  • Jung, Minji
  • 외 2명
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65
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73

초록

Hydrogen storage into aromatic compounds under mild conditions is a stringent issue in liquid organic hydrogen carrier (LOHC) systems. Herein, we report a highly active Ru/MgO catalyst in the hydrogenation of monobenzyltoluene and dibenzyltoluene at low temperatures. When MgO with basic surface oxygen was employed as a support, Ru/MgO showed a faster H-2 storage rate and superior kinetic parameters than the other supported Ru catalysts. The better catalytic performance of Ru/MgO was explained by the results of characterization and control experiments. Ru/MgO could adsorb the large amounts of monobenzyltoluene and hydrogen with higher strength. Particularly, homolytic and heterolytic hydrogen adsorption modes were identified in Ru/MgO, unlike Ru/Al2O3 showing homolytic H-2 adsorption. Density functional theory calculations confirmed heterolytic H-2 dissociation near the Ru-MgO interface, which assured the hydrogenation efficiency of Ru/MgO. Consequently, Ru/MgO is highly recommended for fast hydrogen storage into aromatic LOHC compounds at low temperatures.

키워드

Liquid organic hydrogen carrierHydrogen storageSupported Ru catalystsMgOHeterolytic hydrogen adsorption
제목
Remarkably fast low-temperature hydrogen storage into aromatic benzyltoluenes over MgO-supported Ru nanoparticles with homolytic and heterolytic H-2 adsorption
저자
Kim, Tae WanKim, MinseokKim, Seok KiChoi, Yong NamJung, MinjiOh, HyunchulSuh, Young-Woong
DOI
10.1016/j.apcatb.2021.119889
발행일
2021-06
유형
Article
저널명
Applied Catalysis B: Environmental
286