The crystal-induced energy splitting of the lowest excitonic state in polymer crystals, the so-called Davydov splitting Δ, is calculated with a first-principles density-matrix scheme. We show that different crystalline arrangements lead to significant variations in Δ, from below to above the thermal energy kBT at room temperature, with relevant implications on the luminescence efficiency. This is one more piece of evidence supporting the fact that control of interchain interactions and solid-state packing is essential for the design of efficient optical devices
Two crystal polymorphs of a thiophene–phenylene hexamer with bulky terminal substituents are charact...
Utilizing a force-matching procedure, we parametrize new force fields systematically for large conju...
The photoluminescence (PL) efficiency of substituted α-conjugated quaterthiophene crystals shows mar...
The crystal-induced energy splitting of the lowest excitonic state in polymer crystals, the so-calle...
We investigate two phases of polythiophene crystals by means of first-principles calculations, focus...
We calculate the electronic and optical excitations of polythiophene using the GW (G stands for one-...
We perform ab initio calculations of optical properties for a typical semiconductor conjugated polym...
Symmetrized density-matrix-renormalization-group calculations have been carried out, within Pariser-...
We present an ab initio calculation of the electronic and optical excitations of an isolated polythi...
We present a systematic study of the roles of crystallinity, interchain interaction, and exciton del...
We calculate the electronic and optical excitations of polythiophene using the GW (G stands for one-...
We calculate the electronic and optical excitations of crystalline polythiophene and polyphenylenevi...
The polarized absorption spectra of single crystals of oligothiophenes in a wide spectral range are ...
Two crystal polymorphs of a thiophene–phenylene hexamer with bulky terminal substituents are charact...
Utilizing a force-matching procedure, we parametrize new force fields systematically for large conju...
The photoluminescence (PL) efficiency of substituted α-conjugated quaterthiophene crystals shows mar...
The crystal-induced energy splitting of the lowest excitonic state in polymer crystals, the so-calle...
We investigate two phases of polythiophene crystals by means of first-principles calculations, focus...
We calculate the electronic and optical excitations of polythiophene using the GW (G stands for one-...
We perform ab initio calculations of optical properties for a typical semiconductor conjugated polym...
Symmetrized density-matrix-renormalization-group calculations have been carried out, within Pariser-...
We present an ab initio calculation of the electronic and optical excitations of an isolated polythi...
We present a systematic study of the roles of crystallinity, interchain interaction, and exciton del...
We calculate the electronic and optical excitations of polythiophene using the GW (G stands for one-...
We calculate the electronic and optical excitations of crystalline polythiophene and polyphenylenevi...
The polarized absorption spectra of single crystals of oligothiophenes in a wide spectral range are ...
Two crystal polymorphs of a thiophene–phenylene hexamer with bulky terminal substituents are charact...
Utilizing a force-matching procedure, we parametrize new force fields systematically for large conju...
The photoluminescence (PL) efficiency of substituted α-conjugated quaterthiophene crystals shows mar...