Abstract
With technological advances, light-emitting conjugated oligomers and polymers have become competitive candidates in the commercial market of light-emitting diodes for display and other technologies, due to the ultralow cost, light weight, and flexibility. Prediction of excitation energies of these systems plays a crucial role in the understanding of their optical properties and device design. In this review article, we discuss the calculation of excitation energies with time-dependent density functional theory, which is one of the most successful methods in the investigation of the dynamical response of molecular systems to external perturbation, owing to its high computational efficiency. © 2010 by the authors.
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Tao, J., Tretiak, S., & Zhu, J. X. (2010). Prediction of excitation energies for conjugated oligomers and polymers from time-dependent density functional theor. Materials, 3(5), 3430–3467. https://doi.org/10.3390/ma3053430
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