Precise synthesis of ligand-protected metal nanoclusters for electrochemical/photoelectrochemical applications

Author:

Kawawaki Tokuhisa12ORCID,Negishi Yuichi23

Affiliation:

1. Department of Applied Chemistry, Faculty of Science, Tokyo University of Science , 1-3 Kagurazaka, Shinjuku-ku, Tokyo 162-8601 , Japan

2. Carbon Value Research Center, Research Institute for Science and Technology, Tokyo University of Science , 2641 Noda, Chiba 278-8510 , Japan

3. Institute of Multidisciplinary Research for Advanced Materials, Tohoku University , Katahira 2-1-1, Aoba-ku, Sendai 980-8577 , Japan

Abstract

Abstract Ligand-protected metal nanoclusters (NCs) represent a significant advancement in the field of catalysis due to their unique size-specific electronic and geometric structures. These properties are highly dependent on the metal species, number of constituent atoms, and geometric structure of the metal NC. We discuss on the synthesis, stability, structural characterization, and electrocatalytic/photocatalytic applications of these fascinating materials, emphasizing their superior performance over conventional catalysts. In this study, we have obtained a deeper understanding of the interaction between the metal core and the organic ligands protecting the metal NCs, as well as the desorption behavior of the ligands under calcination, which is crucial for the application of metal NCs as heterogeneous catalysts. Based on this understanding, we have demonstrated that metal NC–supported catalysts with appropriate pretreatment exhibit higher activity as photocatalysts compared to conventional catalysts. Moreover, by suppressing oxygen poisoning through the use of sulfur species in the ligands, Pt NCs showed high activity as cocatalysts for photocatalytic hydrogen evolution in water splitting. Additionally, atomically precised phosphine-protected Pt NCs exhibited high activity as cathode electrocatalysts for fuel cells. These findings are expected to significantly contribute to the development of more diverse catalysts based on metal NCs, including those with varying metal species, numbers of constituent atoms, and geometric structures.

Funder

Japan Society for the Promotion of Science

Scientific Research on Innovative Areas “Aquatic Functional Materials”

Joint Usage/Research Center for Catalysis

Takahashi Industrial and Economic Research Foundation

Yazaki Memorial Foundation for Science and Technology

Kumagai Foundation for Science and Technology

Iwatani Naoji Foundation

Ichimura Foundation for New Technology

Suzuki Foundation

Japan Keirin Autorace

Publisher

Oxford University Press (OUP)

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