An Unprecedented Two-Dimensional Pattern in Gold Nanoclusters Bred by Interlocking Au <sub>4</sub> Blocks
Xu Liu, Xia Zhou, Xiaxi Lei, Jie Kong, Wei Zhang, Meng Zhou, Likai Wang, Wenwu Xu 等 9 位
Jiangsu University Ministry of Education and Child Care Nanjing University Shandong University of Technology
内容与影响
Atomically precise metal nanoclusters with a two-dimensional (2D) structure have not been documented in the library of metal nanoclusters with rich structural diversity. Herein, we construct a novel Au 76 ( p -MBT) 42 ( p -MBT = p -methylbenzenethiol) nanocluster with such an unforeseen 2D configuration by assembling tetrahedral Au 4 blocks into an interlocked gold kernel. Notably, these kernel gold atoms, together with gold atoms from surface staples, engage in building the 72-gold-atom 2D pattern (represented as 6 × 6 × 4) with a highly symmetric C 4 axis and a four-atom thickness. Interestingly, the interlocking Au 4 assembly in the gold kernel contributes to the structural stability of Au 76 ( p -MBT) 42 from geometric and electronic aspects. This nanocluster shows exceptional catalytic performance for the electroreduction of CO 2 to CO in both acidic and alkaline media, outperforming most metal nanoclusters reported under comparable conditions. More generally, our study reveals that the Au 76 ( p -MBT) 42 nanoclusters might serve as active seeds to grow into larger-scale topology along distinct directions to further attain splendid nanostructures, which will provide a conceptual blueprint for developing mechanically interlocked manipulation to construct topological nanocrystals with high atomic precision.
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材料 / 化学Nanocluster Synthesis and Applications
Electrocatalysts for Energy Conversion · Gold and Silver Nanoparticles Synthesis and Applications
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