The intermolecular lattice vibrations in small-molecule organic semiconductors have a strong impact on their functional properties. Existing models treat the lattice vibrations within the harmonic approximation. In this work, polarization-orientation (PO) Raman measurements are used to monitor the temperature-evolution of the symmetry of lattice vibrations in anthracene and pentacene single crystals. Combined with first-principles calculations, it is shown that at 10 K, the lattice dynamics of the crystals are indeed harmonic. However, as the temperature is increased, specific lattice modes gradually lose their PO dependence and become more liquid-like. This finding is indicative of a dynamic symmetry breaking of the crystal structure and s...
We review the Quasi-Harmonic Lattice Dynamic (QHLD) method, which we have recently implemented and a...
The paper reports a complete analysis of the phonon structure of crystalline picene, a recently anno...
The relationship between vibrational mode anharmonicity and the structural phase transition (SPT) in...
The lattice dynamics of organic semiconductors has a significant role in determining their electroni...
The crystal structure and phonon dynamics of pentacene is computed with the Quasi Harmonic Lattice D...
The crystal structure and phonon dynamics of pentacene is computed with the Quasi Harmonic Lattice D...
Single crystals of pentacene with different morphologies (polymorphs C and H) have been studied by R...
Lattice dynamical calculations have been performed for two molecular crystal systems, 7,7,8,8-tetrac...
Spectral and transport properties of small molecule single-crystal organic semiconductors have been ...
The intermolecular potential energy of the 1,2,4,5-tetrabromobenzene (TBB) molecular crystal has bee...
Electron coupling to intramolecular and intermolecular vibrational modes is investigated in models a...
We report Raman spectra of the organic semiconductor 5,6,11,12- tetraphenyltetracene (rubrene) in th...
The presence of impurities in the molecular crystals of organic semiconductors is a key limiting fac...
An improved method for light scattering from acoustic phonons in small, low- symmetry solids is desc...
We review the Quasi-Harmonic Lattice Dynamic (QHLD) method, which we have recently implemented and a...
The paper reports a complete analysis of the phonon structure of crystalline picene, a recently anno...
The relationship between vibrational mode anharmonicity and the structural phase transition (SPT) in...
The lattice dynamics of organic semiconductors has a significant role in determining their electroni...
The crystal structure and phonon dynamics of pentacene is computed with the Quasi Harmonic Lattice D...
The crystal structure and phonon dynamics of pentacene is computed with the Quasi Harmonic Lattice D...
Single crystals of pentacene with different morphologies (polymorphs C and H) have been studied by R...
Lattice dynamical calculations have been performed for two molecular crystal systems, 7,7,8,8-tetrac...
Spectral and transport properties of small molecule single-crystal organic semiconductors have been ...
The intermolecular potential energy of the 1,2,4,5-tetrabromobenzene (TBB) molecular crystal has bee...
Electron coupling to intramolecular and intermolecular vibrational modes is investigated in models a...
We report Raman spectra of the organic semiconductor 5,6,11,12- tetraphenyltetracene (rubrene) in th...
The presence of impurities in the molecular crystals of organic semiconductors is a key limiting fac...
An improved method for light scattering from acoustic phonons in small, low- symmetry solids is desc...
We review the Quasi-Harmonic Lattice Dynamic (QHLD) method, which we have recently implemented and a...
The paper reports a complete analysis of the phonon structure of crystalline picene, a recently anno...
The relationship between vibrational mode anharmonicity and the structural phase transition (SPT) in...