2019
DOI: 10.1039/c9cp03000j
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Solvation dynamics: improved reproduction of the time-dependent Stokes shift with polarizable empirical force field chromophore models

Abstract: The inclusion of polarizability slows down the computed solvation dynamics due to interactions of induced dipoles, improving agreement to experiment.

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Cited by 12 publications
(12 citation statements)
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References 69 publications
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“…In this case this phenomenon occurs because solute/solvent mutual polarization stabilizes Spp* more than Snp*. This finding further highlights the importance of mutual solute/solvent polarization when studying excitedstates properties and dynamics, in line with the indications arising from the analysis of solvent shifts, 216,217 dynamical Stokes shifts, 41 and electronic spectra and dynamics. 136 A similar MQC approach is adopted in ref.…”
Section: Methods Aiming To Include (Some) Nuclear Quantum Effectssupporting
confidence: 65%
See 2 more Smart Citations
“…In this case this phenomenon occurs because solute/solvent mutual polarization stabilizes Spp* more than Snp*. This finding further highlights the importance of mutual solute/solvent polarization when studying excitedstates properties and dynamics, in line with the indications arising from the analysis of solvent shifts, 216,217 dynamical Stokes shifts, 41 and electronic spectra and dynamics. 136 A similar MQC approach is adopted in ref.…”
Section: Methods Aiming To Include (Some) Nuclear Quantum Effectssupporting
confidence: 65%
“…As a consequence, this can be a critical point also for the methods including explicitly solvent molecules in the dynamics simulation, since they are usually described by empirical FFs. In this respect, the advances in the development and use of polarizable FFs 35,41,223 are surely promising, at least in the case where electrostatic terms are those ruling solute-solvent interactions. However, as mentioned above, to be applied to nonadiabatic dynamics, they require a SS description.…”
Section: Discussionmentioning
confidence: 99%
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“…There are other factors that could affect the Stokes shi value and emission shiing of compounds, including solvation dynamic, 54,154 pH effect, 155 temperature, 156,157 polymer dispersion, 158 and others. Therefore, the incorporation of different components of Stokes shi entails a joint venture of consideration between the molecular conformation and its nanoenvironments.…”
Section: Classification Of Stokes Shifts By Narrow Medium and Large (Mega)mentioning
confidence: 99%
“…Lennard-Jones parameters were not optimized, but taken from the CHARMM Drude force field. Atomic polarizabilities and charges in gas phase were computed according to protocols described in detail in references [ 63 , 64 , 65 ] using geometries optimized at the RI-MP2/6-31+G(d) level of theory: Atomic polarizabilities were obtained on the RI-MP2/Sadlej-TZ level of theory using the methodology described in references [ 63 , 64 , 65 ]. According to suggestions in reference [ 42 ], polarizabilities were subsequently scaled by empirical factors, 0.85 for the cation, 0.724 for anion 1 and 0.6 for anion 2 .…”
Section: Methodsmentioning
confidence: 99%