Multi-branched AgAuPt nanoparticles for efficient electrocatalytic hydrogen evolution: Synergism of tip-enhanced electric field effect and local electric field effect

JOURNAL OF ENERGY CHEMISTRY(2023)

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摘要
High-curvature multi-noble metallic heterostructures can effectively enhance the electrocatalytic hydro-gen evolution performance by utilizing the synergism of tip-enhanced electric field effect and local elec-tric field effect. Herein, we report a two-step synthesis strategy to obtain multi-branched high-curvature AgAuPt heterostructure, firstly amino acids-induced growth of Au branches on Ag nanocubes, and sec-ondly L-AA reduction of H2PtCl6 to incorporate tiny Pt nanoparticles on Au branches. The D-CAgAuPt results in a low overpotential of 38 mV to deliver a cathodic current density of 10 mA cm-2, which is superior to commercial 20% Pt/C (46 mV). The strong electronic interactions between multi-noble metals intrinsically enhance the durability and stability of the catalysts. The intrinsic mechanism of promoting HER performance is investigated and revealed in-depth via the FDTD simulations and DFT calculations. In addition, D-CAgAuPt can also achieve efficient and stable hydrogen evolution in a proton exchange mem-brane electrolyzer, which has the potential for commercial practical application. This work designs a novel multi-branched high-curvature multi-noble metallic heterostructure, and fully provides insights into the generical and efficient enhancement of electrocatalytic HER performance of multi-noble metallic heterostructures.(c) 2023 Science Press and Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by ELSEVIER B.V. and Science Press. All rights reserved.
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关键词
High -curvature AgAuPt heterostructures, Hydrogen evolution, FDTD simulations, DFT calculations
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