Gratious Saniya, Li Bo, Mondal Dipanjana, Kumar Alok, Varghese Dayona Aleyamma, Thomas Jibin, Jiang De-En, Kamble Vinayak, Mandal Sukhendu
School of Chemistry, Indian Institute of Science Education and Research Thiruvananthapuram Kerala 695551 India
Department of Chemical and Biomolecular Engineering, Vanderbilt University Nashville TN 37235 USA
Chem Sci. 2025 May 28;16(26):11849-11857. doi: 10.1039/d5sc02515j. eCollection 2025 Jul 2.
Quantum-sized metal nanoclusters can be viewed as superatoms that mimic the electron-shell closing behaviours of atoms, where these electronic shell configurations often govern their properties. Various superatomic nanoclusters with diverse structures and valence states have been identified over the past few years, but the 1S valence state of atomically precise Au nanoclusters has rarely been seen. Herein, we have achieved the synthesis of a 1S superatomic [AuCuS(SAdm)(OSAdm)] nanocluster from the eight-electron [Au(S--CH)] nanocluster a ligand-exchange coupled metal-exchange induced transformation. Detailed studies through mass spectrometry provided insights into the nanocluster formation, and theoretical studies revealed the superatomic nature of the nanocluster. Moreover, the as-synthesized nanocluster exhibited a broad optical absorption, leading to good photocurrent response under UV illumination. This work introduces a novel doping strategy that enables us to realize a rare superatomic valence state in an alloy cluster and to explore its unique light-induced properties.
量子尺寸的金属纳米团簇可被视为模仿原子电子壳层闭合行为的超原子,其中这些电子壳层构型常常决定其性质。在过去几年中,已鉴定出各种具有不同结构和价态的超原子纳米团簇,但原子精确的金纳米团簇的1S价态却鲜有报道。在此,我们通过八电子[Au(S--CH)]纳米团簇的配体交换耦合金属交换诱导转变,实现了1S超原子[AuCuS(SAdm)(OSAdm)]纳米团簇的合成。通过质谱进行的详细研究为纳米团簇的形成提供了见解,理论研究揭示了该纳米团簇的超原子性质。此外,合成的纳米团簇表现出宽泛的光吸收,在紫外光照下产生良好的光电流响应。这项工作引入了一种新颖的掺杂策略,使我们能够在合金团簇中实现罕见的超原子价态,并探索其独特的光诱导性质。