A large thiolate/phosphine coprotected Ag 50 (Dppm) 6 (SR) 30 nanocluster was synthesized through the further growth of Ag 44 (SR) 30 nanocluster and characterized by X-ray photoelectron spectroscopy (XPS), electrospray ionization mass spectrometry (ESI-MS), and single-crystal X-ray analysis. This new nanocluster comprised a 32-metal-atom dodecahedral kernel and two symmetrical Ag 9 (SR) 15 P 6 ring motifs. The 20 valence electrons correspond to shell closure in the Jellium model. Moreover, this nanocluster could be alloyed by templated/galvanic metal exchange to the homologue Au x Ag 50– x (Dppm) 6 (SR) 30 nanocluster; the latter showed much higher thermal stability than the Ag 50 (Dppm) 6 (SR) 30 nanocluster. Further experiments were conducted to study the optical, electrical, and photoluminescence properties of both nanoclusters. Our work not only reports two new larger size nanoclusters but also reveals a new way to synthesize larger size silver and alloy nanoclusters, that is, controlled growth/alloying.
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Du et al. (2017) studied this question.