Unpacking the mechanistic insights into how externally applied electric fields affect the physicochemical properties of crystals represents a challenge of great importance for a plethora of natural phenomena, in addition to a broad array of industrial operations and technologies. As such, the key goals in such field effect studies centre around how thermodynamic and kinetic relaxation processes in crystals are affected, including charge carrier conduction and energy transfer processes, and this is a very recent area of fundamental scrutiny. Indeed, in recent years, there has been a steadily mounting number of reports of field-manipulated crystal-state phenomena. Taking as the background a range of natural phenomena, phenomenological theory,...
We present ab initio density functional (DFT) calculations of the electronic properties of organic m...
Molecular dynamics (MD) simulations have proven to be useful for understanding the complex and dynam...
We show that electrodynamic dipolar interactions, responsible for long-range fluctuations in matter,...
Author Institution:Electronic excitation energy transfer in molecular crystals has been studied in t...
Through molecular dynamics simulations, we report on a new development concerned with creating hithe...
Because of the way the electrostatic potential is defined in a crystal, it is not possible to determ...
International audienceA case study of 1,8-dihydroxy-2-napthaldehyde (DHNA)exhibiting an excited-sta...
With the aim of developing new technologies for the detection and defeat of energetic materials, thi...
Structural response of crystals to an applied external perturbation is important as a key for unders...
The surface structure of molecular crystals is of interest for several applications, such as th...
The structure of alkyl monolayers on the H-terminated Si(111) surface under the external electric fi...
Swollen elastomer liquid crystals undergo significant deformations by application of an electric fie...
Periodic first-principle calculations have been performed to study the effects of electric field on ...
Modern energy technologies require ever new energy storage devices such as batteries and capacitors....
We present a broad effort at the development of crystal simulation methodology and its application ...
We present ab initio density functional (DFT) calculations of the electronic properties of organic m...
Molecular dynamics (MD) simulations have proven to be useful for understanding the complex and dynam...
We show that electrodynamic dipolar interactions, responsible for long-range fluctuations in matter,...
Author Institution:Electronic excitation energy transfer in molecular crystals has been studied in t...
Through molecular dynamics simulations, we report on a new development concerned with creating hithe...
Because of the way the electrostatic potential is defined in a crystal, it is not possible to determ...
International audienceA case study of 1,8-dihydroxy-2-napthaldehyde (DHNA)exhibiting an excited-sta...
With the aim of developing new technologies for the detection and defeat of energetic materials, thi...
Structural response of crystals to an applied external perturbation is important as a key for unders...
The surface structure of molecular crystals is of interest for several applications, such as th...
The structure of alkyl monolayers on the H-terminated Si(111) surface under the external electric fi...
Swollen elastomer liquid crystals undergo significant deformations by application of an electric fie...
Periodic first-principle calculations have been performed to study the effects of electric field on ...
Modern energy technologies require ever new energy storage devices such as batteries and capacitors....
We present a broad effort at the development of crystal simulation methodology and its application ...
We present ab initio density functional (DFT) calculations of the electronic properties of organic m...
Molecular dynamics (MD) simulations have proven to be useful for understanding the complex and dynam...
We show that electrodynamic dipolar interactions, responsible for long-range fluctuations in matter,...