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Theory and algorithms for the excited states of large molecules and molecular aggregates

Authors :
Liang, WanZhen
Wu, Wei
Source :
SCIENCE CHINA Chemistry; September 2013, Vol. 56 Issue: 9 p1267-1270, 4p
Publication Year :
2013

Abstract

This project aims to attack the frontiers of electronic structure calculations on the excited states of large molecules and molecular aggregates by developing novel theoretical and computational methods. The methodology development is especially based on the time-dependent density functional theory (TDDFT) and valence bond (VB) theory, and is expected to be computationally effective and accurate as well. Research works on the following related subjects will be performed: (1) The analytical energy-derivative approaches for electronically excited state within TDDFT will be developed to reduce bypass the computational costs in the calculation of molecular excited-state properties. (2) The ab initiomethods for electronically excited state based on VB theory and hybrid TDDFT-VB method will be developed to overcome the limitations of current TDDFT in simulating photophysics and photochemistry. (3) For larger aggregates, neither ab initiomethods nor TDDFT is applicable. We intend to build the effective model Hamiltonian by developing novel theoretical and computational methods to calculate the involved microscopic physical parameters from the first-principles methods. The constructed effective Hamiltonian is then used to describe the excitonic states and excitonic dynamics of the natural or artificial photosynthesized systems, organic or inorganic photovoltaic cell. (4) The condensed phase environment is taken into account by combining the developed theories and algorithms based on TDDFT and VB with the polarizable continuum solvent models (PCM), molecular mechanism (MM), classical electrodynamics (ED) or molecular dynamics (MD) theory. (5) Highly efficient software packages will be designed and developed.

Details

Language :
English
ISSN :
16747291 and 18691870
Volume :
56
Issue :
9
Database :
Supplemental Index
Journal :
SCIENCE CHINA Chemistry
Publication Type :
Periodical
Accession number :
ejs30887183
Full Text :
https://doi.org/10.1007/s11426-013-4907-8