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◆ Inorganic Chemistry2025-11-17· Nanoclusters

Anions- and Solvents-Triggered Reversible Interconversion in Silver Nanocluster and Their Assembly

Jiahao Liu, Chunmin Fang, Kaiyang Kuang, Chuanjun Zhou, Zhuoyuan Li, Wenjun Ma, Shan Jin, Shuang Chen, Manzhou Zhu

原始摘要(英文原文)· Original abstract
Atomic-precision nanoclusters have emerged as a pivotal frontier in nanotechnology, attributed to their exceptional structural transformation and assembly capabilities. Silver-based nanoclusters are characterized by their adjustable structures and properties that are susceptible to environmental influences, which render them an ideal platform for functional modifications. This study reports the synthesis of the green [Ag 27 (SAdm) 12 (DPPP) 2 (F 3 C 2 O 2 ) 6 ]Cl nanocluster stabilized by 1,3-bis(diphenylphosphine)propane and 1-adamantanethiol. Upon the introduction of F 3 CSO 3 – ions, these nanoclusters undergo transformation to form the red [Ag 27 (SAdm) 12 (DPPP) 3 (F 3 C 2 O 2 ) 3 Cl 2 ](F 3 CSO 3 ). Notably, the two nanoclusters separately exhibit interconversion with [Ag 23 (SAdm) 12 ] 3+: they transform into [Ag 23 (SAdm) 12 ] 3+ in polar solvents and revert to the corresponding Ag 27 nanoclusters in nonpolar solvents. Furthermore, when [Ag 23 (SAdm) 12 ] 3+ interacts with ClO 4 – ions, it self-assembles into a three-dimensional framework structure of [Ag 23 (SAdm) 12 ](ClO 4 ) 3, exhibiting pronounced photoluminescence. This work sheds light on understanding the ion- and solvent-induced cluster transformation and assembly mechanisms, which will facilitate the investigation of metal nanoclusters or even nanoparticles containing various ions in various solvent systems.
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Anions- and Solvents-Triggered Reversible Interconversion in Silver Nanocluster and Their Assembly — 科研速览 Science Skim