| Literature DB >> 34084402 |
Hiroto Yoshida1, Masahiro Ehara2, U Deva Priyakumar3, Tsuyoshi Kawai1, Takuya Nakashima1.
Abstract
The optical activity of a metal nanocluster (NC) is induced either by an asymmetric arrangement of constituents or by a dissymmetric field of a chiral ligand layer. Herein, we unveil the origin of chirality in Ag29 NCs, which is attributed to the intrinsically chiral atomic arrangement. The X-ray crystal structure of a Ag29(BDT)12(TPP)4 NC (BDT: 1,3-benzenedithiol; TPP: triphenylphosphine) manifested the presence of intrinsic chirality in the outer shell capping the icosahedral achiral Ag13 core. The enantiomers of the Ag29(BDT)12(TPP)4 NC are separated by high-performance liquid chromatography (HPLC) using a chiral column for the first time, showing mirror-image circular dichroism (CD) spectra. The CD spectra are reproduced by time-dependent density functional theory (TDDFT) calculations based on enantiomeric Ag29 models with achiral 1,3-propanedithiolate ligands. The mechanism of chiral induction in the synthesis of Ag29(DHLA)12 (DHLA: α-dihydrolipoic acid) NCs with a chiral ligand system is further discussed with the aid of DFT calculations. The use of the enantiomeric DHLA ligand preferentially leads to a one-handed atomic arrangement which is more stable than the opposite one, inducing the enantiomeric excess in the population of intrinsically chiral Ag29 NCs with CD activity. This journal is © The Royal Society of Chemistry.Entities:
Year: 2020 PMID: 34084402 PMCID: PMC8157427 DOI: 10.1039/c9sc05299b
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Simultaneous CD (top) and absorbance (bottom) detected (at 450 nm) chiral HPLC chromatograms of Ag29(BDT)12(TPP)4 NCs.
Fig. 2CD spectra of silver NCs in ethanol after the separation with the chiral column.
Fig. 3(a) Optimized structures of enantiomeric Ag29(1,3-propanedithiolate)12 model NCs. Hydrogen atoms were omitted for clarity. (b) Simulated CD spectrum based on the R-NC model. (c) Representative HOMO and LUMO orbitals of Ag29(1,3-propanedithiolate)12(3−) (isovalue = 0.02).
Fig. 4Four possible combinations between the handedness of the NC and (R)-ligand coordination orientation represented by the face-capping Ag-centered coordination unit (Ag(dithiolate)3 unit) as a part of the NC structure.
Fig. 5Experimental (a) and simulated (b) CD spectra of Ag29(R-DHLA)12 NCs and the L-3 NC model, respectively.