Reliable Prediction of Charge Transfer Excitations in Molecular Complexes Using Time-Dependent Density Functional Theory
Hebrew University of Jerusalem · Weizmann Institute of Science
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Abstract
We show how charge transfer excitations at molecular complexes can be calculated quantitatively using time-dependent density functional theory. Predictive power is obtained from range-separated hybrid functionals using nonempirical tuning of the range-splitting parameter. Excellent performance of this approach is obtained for a series of complexes composed of various aromatic donors and the tetracyanoethylene acceptor, paving the way to systematic nonempirical quantitative studies of charge-transfer excitations in real systems.
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3Topics & keywords
Topics
Keywords
- Tetracyanoethylene
- Chemistry
- Charge (physics)
- Density functional theory
- Range (aeronautics)
- Acceptor
- Transfer (computing)
- Series (stratigraphy)
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