Efficient “Click”‐Dendrimer‐Supported Synergistic Bimetallic Nanocatalysis for Hydrogen Evolution by Sodium Borohydride Hydrolysis

Naixin Kang, Rodrigue Djeda, Qi Wang, Fangyu Fu, Jaimé Ruiz, Jean‐Luc Pozzo, Didier Astruc

ChemCatChem · 2019 · 36 citations · 62 references

Concepts

Abstract

Abstract Hydrogen is efficiently generated upon “click” dendrimer‐supported catalysis of NaBH 4 hydrolysis by a series mono‐ and bimetallic nanoparticles (NPs) of the late transition metals. Among the monometallic NPs, PtNPs show the best performances, Co being the best first‐raw transition metal. A remarkable synergy between Pt and Co in Pt/CoNP@dendrimer is also disclosed, compared with various other bimetallic NP catalysts, achieving a TOF of 303 mol H2 ⋅ mol catal. −1 ⋅ min −1 when the ratio of Pt to Co is 1 : 1. In the presence of NaOH, the catalytic activity is boosted for all monometallic NPs except PtNPs, but NaOH exerted a negative influence on the bimetallic NP catalysts. The kinetic studies with the catalyst Pt 1 Co 1 NP@dendrimer involve in particular a primary kinetic isotope effect k D / k H =3.41 obtained for the hydrolysis reaction with D 2 O, suggesting that O−H bond cleavage of water is involved in the rate‐determining step, and an overall reaction mechanism is proposed.

References

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