Absolute configuration retention of a configurationally labile ligand during dynamic processes of thiolate protected gold clusters

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Abstract

Monolayer protected metal clusters are dynamic nanoscale objects. For example, the chiral Au38(2-PET)24cluster (2-PET: 2-phenylethylthiolate) racemizes at moderate temperature. In addition, ligands and metal atoms can easily exchange between clusters. Such processes are important for applications of monolayer protected metal clusters; however, the mechanistic study of such processes turns out to be challenging. Here we use a configurationally labile, axially chiral ligand, biphenyl-2,2′-dithiol (R/S-BiDi), as a probe to study dynamic cluster processes. It is shown that the ligand exchange of free R/S-BiDi on a chiral Au38(2-PET)24cluster is diastereospecific. Using chiral chromatography, isolated single diastereomers of the type anticlockwise/clockwise-Au38(2-PET)22(R/S-BiDi)1could be isolated. Upon heating, the cluster framework racemizes, while the R/S-BiDi ligand does not. These findings demonstrate that during cluster racemization and/or ligand exchange between clusters, the R/S-BiDi ligand is sufficiently confined, thus preventing its racemization, and exclude the possibility that the ligand desorbs from the cluster surface.

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Wang, Y., Makkonen, E., Chen, X., & Bürgi, T. (2021). Absolute configuration retention of a configurationally labile ligand during dynamic processes of thiolate protected gold clusters. Chemical Science, 12(27), 9413–9419. https://doi.org/10.1039/d1sc01702k

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