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Zwitterionic Thiolate-Protected Ag(0/I) and Ag(I) Clusters: Assembly, Structural Characterization, and Antibacterial Activity. | LitMetric

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Article Abstract

Zwitterionic thiolate ligands have the potential to introduce novel assembly modes and functions for noble metal clusters. However, their utilization in the synthesis of silver clusters remains understudied, particularly for the clusters containing reductive Ag(0) species. In this article, we report the first synthesis of a mixed-valence silver(0/I) cluster protected by zwitterionic Tab as thiolate ligands (Tab = 4-(trimethylammonio)benzenethiolate), denoted as [Ag(Tab)](PF)·16CHOH·6EtO (·16CHOH·6EtO), alongside an Ag(I) cluster [Ag(Tab)(PhCOO)(MeCN)(HO)](PF)·11MeCN (·11MeCN). has a distinct hierarchical supratetrahedral structure with a central {Ag} kernel surrounded by four [Ag(Tab)] units. High-resolution electrospray ionization mass spectra demonstrate that has two free electrons, indicating a superatomic core. has a drum-like [Ag(Tab)(PhCOO)(HO)] inner core capped by two tetrahedral-like [Ag(Tab)(PhCOO)(MeCN)] units. can be transformed into after its reaction with NaBH in solution. Antibacterial measurements reveal that has a significantly lower minimum inhibitory concentration than that of the cluster. This work not only extends the stabilization of silver(0/I) clusters to neutral thiol ligands but also offers new materials for the development of novel antibacterial materials.

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http://dx.doi.org/10.1021/acs.inorgchem.4c01735DOI Listing

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