4.8 Article

Three-in-One Strategy to Improve Both Catalytic Activity and Selectivity: Nonconcentric Pd-Au Nanoparticles

Journal

JOURNAL OF PHYSICAL CHEMISTRY LETTERS
Volume 12, Issue 45, Pages 11098-11105

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpclett.1c03256

Keywords

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Funding

  1. Creative Materials Discovery Program through the National Research Foundation of Korea [NRF-2016M3D1A1021141]

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The researchers synthesized nonconcentric Pd-Au nanoparticles and found that they exhibited high activity and selectivity in direct H2O2 synthesis. By using a 3-in-1 strategy and optimizing performance by controlling the number of Pd/Au interfaces, the potential of the novel alloy catalyst was demonstrated.
In direct H2O2 synthesis, the Pd-Au alloy was considered as a potential catalyst because of its much better performance compared to the prototype Pd; unfortunately, achieving both high activity and selectivity remains a challenge. Here, we synthesized nonconcentric Pd-Au NPs in which Au domain shells are formed only partially on Pd domain cores and tested them for direct H2O2 synthesis. It has three exposed regions of Pd, Au domains, and Pd-Au interfaces in a single NP (hence, a 3-in-1 strategy). Creating nonconcentric forms was demonstrated convincingly by density functional theory calculations. The nonconcentric Pd-Au particles exhibit high and well-balanced performances that are hard to achieve with traditional alloyed Pd-Au. The number of Pd/Au interfaces was found to be the key factor and thus was optimized by controlling the Au precursor concentrations. The hitherto underutilized structure of nonconcentric bimetallic alloys can be useful and thus should be more actively investigated for catalyst development.

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