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Defect‐Rich Co−CoO<sub>x</sub>‐Graphene Nanocatalysts for Efficient Hydrogen Production from Ammonia Borane

Shuyan Guan, Lina Zhang, Huanhuan Zhang, Yong Guo, Baozhong Liu, Hao Wen, Yanping Fan, Baojun Li

2020Chemistry - An Asian Journal21 citationsDOI

Abstract

Abstract Chemical hydrogen storage ammonia borane has attracted extensive attention as a method of efficient utilization of hydrogen energy. The high‐efficiency catalysts are the main factor restricting the hydrogen production of ammonia borane. In this paper, the synergistic effect of Co and CoO x supported on graphene (named Co−CoO x @GO‐II) promotes the efficient hydrogen production of ammonia borane, and its catalytic hydrogen production rate can reach 5813 mL min −1 g Co −1 at 298 K, the corresponding TOF is 15.33 min −1 . After five stability tests, Co−CoO x @GO‐II maintained 65% of its original catalytic performance. The synergy of metal and metal oxide and the defects in the atomic arrangement ensure the catalytic activity, the large specific surface area of graphene ensures the dispersion and fixation. This strategy may provide a possibility to design high‐performance transition metal catalysts.

Topics & Concepts

Ammonia boraneCatalysisGrapheneNanomaterial-based catalystHydrogenHydrogen productionHydrogen storageAmmoniaOxideBoraneMaterials scienceInorganic chemistryAmmonia productionMetalTransition metalChemistryChemical engineeringNanotechnologyMetallurgyOrganic chemistryEngineeringHydrogen Storage and MaterialsAmmonia Synthesis and Nitrogen ReductionMetal-Organic Frameworks: Synthesis and Applications
Defect‐Rich Co−CoO<sub>x</sub>‐Graphene Nanocatalysts for Efficient Hydrogen Production from Ammonia Borane | Litcius