Atom-Precise Heteroatom Core-Tailoring of Nanoclusters for Enhanced Solar Hydrogen Generation.

Bootharaju, Megalamane Siddaramappa; Lee, Chan Woo; Deng, Guocheng; Kim, Hyeseung; Lee, Kangjae; Lee, Sanghwa; Chang, Hogeun; Lee, Seongbeom et al. · Adv Mater · 2023

basic_science · Level V

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Abstract

While core-shell nanomaterials are highly desirable for realizing enhanced optical and catalytic properties, their synthesis with atomic-level control is challenging. Here, the synthesis and crystal structure of [Au<sub>12</sub> Ag<sub>32</sub> (SePh)<sub>30</sub> ]<sup>4-</sup> , the first example of selenolated Au-Ag core-shell nanoclusters, comprising a gold icosahedron core trapped in a silver dodecahedron, which is protected by an Ag<sub>12</sub> (SePh)<sub>30</sub> shell, is presented. The gold core strongly modifies the overall electronic structure and induces synergistic effects, resulting in high enhancements in the stability and near-infrared-II photoluminescence. The Au<sub>12</sub> Ag<sub>32</sub> and its homometal analog Ag<sub>44</sub> , show strong interactions with oxygen vacancies of TiO<sub>2</sub> , facilitating the interfacial charge transfer for photocatalysis. Indeed, the Au<sub>12</sub> Ag<sub>32</sub> /TiO<sub>2</sub> exhibits remarkable solar H<sub>2</sub> production (6810 µmol g<sup>-1</sup>  h<sup>-1</sup> ), which is ≈6.2 and ≈37.8 times higher than that of Ag<sub>44</sub> /TiO<sub>2</sub> and TiO<sub>2</sub> , respectively. Good stability and recyclability with minimal catalytic activity loss are additional features of Au<sub>12</sub> Ag<sub>32</sub> /TiO<sub>2</sub> . The experimental and computational results reveal that the Au<sub>12</sub> Ag<sub>32</sub> acts as an efficient cocatalyst by possessing a favorable electronic structure that aligns well with the TiO<sub>2</sub> bands for the enhanced separation of photoinduced charge carriers due to the relatively negatively charged Au<sub>12</sub> core. These atomistic insights will motivate uncovering of the structure-catalytic activity relationships of other nanoclusters.