Revealing the chirality origin and homochirality crystallization of Ag<sub>14</sub> nanocluster at the molecular level.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 34404784.
- Also identified by DOI 10.1038/s41467-021-25275-2 and PMC identifier 8371133.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Although chirality is an ever-present characteristic in biology and some artificial molecules, controlling the chirality and demystifying the chirality origin of complex assemblies remain challenging. Herein, we report two homochiral Ag<sub>14</sub> nanoclusters with inherent chirality originated from identical rotation of six square faces on a Ag<sub>8</sub> cube driven by intra-cluster π···π stacking interaction between pntp<sup>-</sup> (Hpntp = p-nitrothiophenol) ligands. The spontaneous resolution of the racemic (SD/rac-Ag14a) to homochiral nanoclusters (SD/L-Ag14 and SD/R-Ag14) can be realized by re-crystallizing SD/rac-Ag14a in acetonitrile, which promotes the homochiral crystallization in solid state by forming C-H···O/N hydrogen bonds with nitro oxygen atoms in pntp<sup>-</sup> or aromatic hydrogen atoms in dpph (dpph = 1,6-bis(diphenylphosphino)hexane) on Ag<sub>14</sub> nanocluster. This work not only provides strategic guidance for the syntheses of chiral silver nanoclusters in an all-achiral environment, but also deciphers the origin of chirality at molecular level by identifying the special effects of intra- and inter-cluster supramolecular interactions.
Medical subject headings
- Crystallization
- Organometallic Compounds
- Physical Phenomena
- Silver