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Simulating Electron Dynamics in Polarizable Environments

delete2017-08-17
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PRE
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X
Xiaojing Wu
J
Jean-Marie Teuler
F
Fabien Cailliez
C
Carine Clavaguéra
D
Dennis R. Salahub
A
Aurélien de la Lande *
DOI:10.1021/acs.jctc.7b00251delete
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Abstract

Abstract

En 中文
We propose a methodology for simulating attosecond electron dynamics in large molecular systems. Our approach is based on the combination of real time time-dependent-density-functional theory (RT-TDDFT) and polarizable Molecular Mechanics (MMpol) with the point-charge-dipole model of electrostatic induction. We implemented this methodology in the software deMon2k that relies heavily on auxiliary fitted densities. In the context of RT-TDDFT/MMpol simulations, fitted densities allow the cost of the calculations to be reduced drastically on three fronts: (i) the KohnSham potential, (ii) the electric field created by the (fluctuating) electron cloud which is needed in the QM/MM interaction, and (iii) the analysis of the fluctuating electron density on-the-fly. We determine conditions under which fitted densities can be used without jeopardizing the reliability of the simulations. Very encouraging results are found both for stationary and time-dependent calculations. We report absorption spectra of a dye molecule in the gas phase, in nonpolarizable water, and in polarizable water. Finally, we use the method to analyze the distance-dependent response of the environment of a peptide perturbed by an electric field. Different response mechanisms are identified. It is shown that the induction on MM sites allows excess energy to dissipate from the QM region to the environment. In this regard, the first hydration shell plays an essential role in absorbing energy. The methodology presented herein opens the possibility of simulating radiation-induced electronic phenomena in complex and extended molecular systems.
Keywords:
DENSITY-FUNCTIONAL THEORY
CHARGE-TRANSFER DYNAMICS
AB-INITIO CALCULATIONS
REAL-TIME TDDFT
MOLECULAR-DYNAMICS
CONTINUUM MODEL
EXCITED-STATES
FORCE-FIELDS
NUMERICAL-INTEGRATION
QM/MM CALCULATIONS
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Journal

Journal of Chemical Theory and Computation cover
Journal of Chemical Theory and Computation
IF:
5.5
Papers:
1.1W
Citations:
5.4W

Organization

C
centre national de la recherche scientifique (cnrs)
Scholars:
24.5W
Papers: 18.2W
Citations: 279
U
Universite Paris Saclay
Scholars:
7.3W
Papers: 5.3W
Citations: 540
Cited Papers

Cited Papers

LICHEM: A QM/MM Program for Simulations with Multipolar and Polarizable Force Fields
err2016-01-18
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errKratz, Eric G.; Walker, Alice R.; Lagardere, Louis; Lipparini, Filippo; Piquemal, Jean-Philip; Cisneros, G. Andres
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