scholarly journals Solvation dynamics: improved reproduction of the time-dependent Stokes shift with polarizable empirical force field chromophore models

2019 ◽  
Vol 21 (32) ◽  
pp. 17703-17710 ◽  
Author(s):  
Esther Heid ◽  
Stella Schmode ◽  
Payal Chatterjee ◽  
Alexander D. MacKerell ◽  
Christian Schröder

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

2016 ◽  
Vol 18 (45) ◽  
pp. 30954-30960 ◽  
Author(s):  
Michael Schmollngruber ◽  
Daniel Braun ◽  
Othmar Steinhauser

The time-dependent Stokes shift is shown to be a localized and short-ranged effect in ionic liquids.


2019 ◽  
Author(s):  
Kateryna Goloviznina ◽  
José N. Canongia Lopes ◽  
Margarida Costa Gomes ◽  
Agilio Padua

A general, transferable polarisable force field for molecular simulation of ionic liquids and their mixtures with molecular compounds is developed. This polarisable model is derived from the widely used CL\&P fixed-charge force field that describes most families of ionic liquids, in a form compatible with OPLS-AA, one of the major force fields for organic compounds. Models for ionic liquids with fixed, integer ionic charges lead to pathologically slow dynamics, a problem that is corrected when polarisation effects are included explicitly. In the model proposed here, Drude induced dipoles are used with parameters determined from atomic polarisabilities. The CL\&P force field is modified upon inclusion of the Drude dipoles, to avoid double-counting of polarisation effects. This modification is based on first-principles calculations of the dispersion and induction contributions to the van der Waals interactions, using symmetry-adapted perturbation theory (SAPT) for a set of dimers composed of positive, negative and neutral fragments representative of a wide variety of ionic liquids. The fragment approach provides transferability, allowing the representation of a multitude of cation and anion families, including different functional groups, without need to re-parametrise. Because SAPT calculations are expensive an alternative predictive scheme was devised, requiring only molecular properties with a clear physical meaning, namely dipole moments and atomic polarisabilities. The new polarisable force field, CL\&Pol, describes a broad set set of ionic liquids and their mixtures with molecular compounds, and is validated by comparisons with experimental data on density, ion diffusion coefficients and viscosity. The approaches proposed here can also be applied to the conversion of other fixed-charged force fields into polarisable versions.<br>


1987 ◽  
Vol 22 (5) ◽  
pp. 479-480 ◽  
Author(s):  
Anton Beyer ◽  
Peter Wolschann ◽  
Armin Becker ◽  
Gerhard Buchbauer ◽  
Karin Mraz

2004 ◽  
Vol 03 (01) ◽  
pp. 117-144 ◽  
Author(s):  
AKIRA YOSHIMORI

This article reviews microscopic development of time dependent functional method and its application to chemical physics. It begins with the formulation of density functional theory. The time dependent extension is discussed after the equilibrium formulation. Its application is explained by solvation dynamics. In addition, it reviews studies of nonlinear effects on polar liquids and simple mixtures.


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