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Open AccessJournal ArticleDOI

Analytic derivative couplings and first-principles exciton/phonon coupling constants for an ab initio Frenkel-Davydov exciton model: Theory, implementation, and application to compute triplet exciton mobility parameters for crystalline tetracene

Adrian F. Morrison, +1 more
- 14 Jun 2017 - 
- Vol. 146, Iss: 22, pp 224110-224110
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TLDR
Nuclear derivatives of the exciton Hamiltonian's matrix elements are equivalent to the "Holstein" and "Peierls" exciton/phonon couplings that are widely discussed in the context of model Hamiltonians for energy and charge transport in organic photovoltaics.
Abstract
Recently, we introduced an ab initio version of the Frenkel-Davydov exciton model for computing excited-state properties of molecular crystals and aggregates. Within this model, supersystem excited states are approximated as linear combinations of excitations localized on molecular sites, and the electronic Hamiltonian is constructed and diagonalized in a direct-product basis of non-orthogonal configuration state functions computed for isolated fragments. Here, we derive and implement analytic derivative couplings for this model, including nuclear derivatives of the natural transition orbital and symmetric orthogonalization transformations that are part of the approximation. Nuclear derivatives of the exciton Hamiltonian's matrix elements, required in order to compute the nonadiabatic couplings, are equivalent to the "Holstein" and "Peierls" exciton/phonon couplings that are widely discussed in the context of model Hamiltonians for energy and charge transport in organic photovoltaics. As an example, we compute the couplings that modulate triplet exciton transport in crystalline tetracene, which is relevant in the context of carrier diffusion following singlet exciton fission.

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Software for the frontiers of quantum chemistry: An overview of developments in the Q-Chem 5 package

Evgeny Epifanovsky, +238 more
TL;DR: The Q-Chem quantum chemistry program package as discussed by the authors provides a suite of tools for modeling core-level spectroscopy, methods for describing metastable resonances, and methods for computing vibronic spectra, the nuclear-electronic orbital method, and several different energy decomposition analysis techniques.
Journal ArticleDOI

Polarizable embedding QM/MM: the future gold standard for complex (bio)systems?

TL;DR: This work focuses on the induced point dipole formulation of polarizable QM/MM approaches and shows how efficient and linear scaling implementations have allowed their application to the modeling of complex biosystems, including Born-Oppenheimer dynamics, enhanced sampling techniques and nonadiabatic descriptions.
Journal ArticleDOI

Evidence for Singlet Fission Driven by Vibronic Coherence in Crystalline Tetracene

TL;DR: Four intramolecular modes in the range of 1400-1600 cm-1, which are nearly resonant with the single-exciton/multiexciton energy gap, appear to play a key role and are almost entirely of "Holstein" type, modulating the site energies rather than the intersite couplings.
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Fantasy versus reality in fragment-based quantum chemistry.

TL;DR: As fragment-based quantum chemistry methods begin to mature, it is time to have a serious conversation about what they can and cannot be expected to accomplish in the near future.
Journal ArticleDOI

Quantum Chemical Modeling of the Photoinduced Activity of Multichromophoric Biosystems.

TL;DR: The advancements developed so far highlighting differences and similarities with the single chromophore treatment are reviewed and the important limitations and challenges that still need to be tackled are outlined to reach a complete and accurate picture of their photoinduced properties and dynamics.
References
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QUANTUM ESPRESSO: a modular and open-source software project for quantum simulations of materials

TL;DR: QUANTUM ESPRESSO as discussed by the authors is an integrated suite of computer codes for electronic-structure calculations and materials modeling, based on density functional theory, plane waves, and pseudopotentials (norm-conserving, ultrasoft, and projector-augmented wave).
Journal ArticleDOI

Long-range corrected hybrid density functionals with damped atom–atom dispersion corrections

TL;DR: The re-optimization of a recently proposed long-range corrected hybrid density functional, omegaB97X-D, to include empirical atom-atom dispersion corrections yields satisfactory accuracy for thermochemistry, kinetics, and non-covalent interactions.
Journal Article

Long-Range Corrected Hybrid Density Functionals with Damped Atom-Atom Dispersion Corrections

TL;DR: Chai and Head-Gordon as discussed by the authors proposed a long-range corrected (LC) hybrid density functional with Damped Atom-Atom Dispersion corrections, which is called ωB97X-D.
Journal ArticleDOI

Charge transport in organic semiconductors.

TL;DR: Electronic Coupling in Oligoacene Derivatives: Factors Influencing Charge Mobility, and the Energy-Splitting-in-Dimer Method 3.1.
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Advances in molecular quantum chemistry contained in the Q-Chem 4 program package

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