Miscible-Solvent-Assisted Two-Phase Synthesis of Monolayer-Ligand-Protected Metal Nanoclusters with Various Sizes.
basic_science · Level V
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- Also identified by DOI 10.1002/adma.201906063.
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Abstract
Effective yet versatile synthetic strategies for size-tunable metal nanoclusters (NCs) are scarce. This has hampered the development of this unique class of nanomaterials. Here, a general protocol is reported for the synthesis of high-quality metal NCs protected by a variety of organic ligands (e.g., selenolate, thiolate, and phosphine) based on a miscible-solvent-assisted phase transfer between water and organic solution. This method is demonstrated to be facile, rapid (≤3 h), scalable (gram-scale), and versatile. The size of the selenolated and thiolated Au NCs can be tuned from Au<sub>10</sub> to Au<sub>61</sub> by simply varying the miscible solvent in proportions and types. The advantages of this method, such as quick phase separation and no need for purification treatment, enable real-time monitoring of metal NC growth within the NaBH<sub>4</sub> reduction system. The results show that the size of Au NCs gradually increases with increasing valence electron count by a stepwise 2x e<sup>-</sup> hopping mechanism (x = 0-5), i.e., 0 e<sup>-</sup> → 2 e<sup>-</sup> → 4 e<sup>-</sup> → 8 e<sup>-</sup> → 18 e<sup>-</sup> → 22 e<sup>-</sup> → 32 e<sup>-</sup> .