| Literature DB >> 28626569 |
Abstract
The two-photon absorption (TPA) cross-sections of small thiolate-protected gold clusters have been shown to be much larger than typical small organic molecules. In comparison with larger nanoparticles, their TPA cross-sections per gold atom are also found to be larger. Theoretical simulations have suggested that the large enhancement of these TPA cross-sections comes from a one-photon double-resonance mechanism. However, it remains difficult to simulate TPA cross-sections of thiolate-protected gold clusters due to their large system size and a high density of states. In this work, we report a time-dependent density functional theory (TDDFT) study of the TPA spectra of the Au25(SR)18- cluster based on a damped response theory formalism. Damped response theory enables a consistent treatment of on- and off-resonance molecular properties even for molecules with a high density of states, and thus is well-suited for studying the TPA properties of gold clusters. Our results indicate that the one- and two-photon double-resonance effect is much smaller than previously found, and thus is unlikely to be the main cause of the large TPA cross-sections found experimentally. The effect of symmetry breaking of the Au25(SR)18- cluster due to the ligands on the TPA cross-sections has been studied and was found to only slightly increase the cross-section. Furthermore, by comparing with larger nanoparticles we find that the TPA cross-section per gold atom scales linearly with the diameter of the particles, and that the Kerr non-linear response of the Au25(SR)18- cluster is on the same order as that of bulk gold films.Entities:
Year: 2017 PMID: 28626569 PMCID: PMC5471455 DOI: 10.1039/c7sc00968b
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1(a) Simulated absorption spectrum for the Au25(SR)18 – (R = H) cluster in the gas phase. (b) Experimental absorption spectrum for the Au25(SR)18 – (R = CH2CH2Ph) cluster in toluene taken from ref. 12.
Fig. 2Simulated TPA spectrum for the Au25(SH)18 – clusters in the gas phase.
Fig. 3Schematic energy diagram showing the most important transitions for the Au25(SH)18 – cluster in the gas phase.
Fig. 4Simulated TPA spectrum for the Au25(SH)16(SPh)2 – cluster in the gas phase.
Fig. 5Calculated Re[γ IDRI] (blue solid line), Im[γ TPA] (green dashed line), and Im[γ IDRI] (magenta dash-dotted line) for the Au25(SH)18 – cluster in the gas phase. The black dashed line shows a value of 0 esu.