posted on 2018-04-11, 00:00authored byPaul N. Day, Ruth Pachter, Kiet A. Nguyen
In
this work, we studied theoretically two hybrid gold–silver
clusters, which were reported to have dual-band emission, using density
functional theory (DFT) and linear and quadratic response time-dependent
DFT (TDDFT). Hybrid functionals were found to successfully predict
absorption and emission, although explanation of the NIR emission
from the larger cluster (cluster 1) requires significant
vibrational excitation in the final state. For the smaller cluster
(cluster 2), the ΔH(0–0)
value calculated for the T1 → S0 transition, using the PBE0
functional, is in good agreement with the measured NIR emission, and
the calculated T2 → S0 value is in fair agreement with the
measured visible emission. The calculated T1 → S0 phosphorescence
ΔH(0–0) for cluster 1 is
close to the measured visible emission energy. In order for the calculated
phosphorescence for cluster 1 to agree with the intense
NIR emission reported experimentally, the vibrational energy of the
final state (S0) is required to be about 0.7 eV greater than the zero-point
vibrational energy.