Incorporating ethylene glycols (EGs) into organic semiconductors has become the prominent strategy to increase their dielectric constant. However, EG's contribution to the dielectric constant is due to nuclear relaxations, and therefore, its relevance for various organic electronic applications depends on the time scale of these relaxations, which remains unknown. In this work, by means of a new computational protocol based on polarizable molecular dynamics simulations, the time- and frequency-dependent dielectric constant of a representative fullerene derivative with EG side chains is predicted, the origin of its unusually high dielectric constant is explained, and design suggestions are made to further increase it. Finally, a dielectric r...
The low efficiency of organic photovoltaic (OPV) devices has often been attributed to the strong Cou...
Current organic semiconductors for organic photovoltaics (OPV) have relative dielectric constants (r...
The dielectric constant (ϵr) of organic semiconductors is a key material parameter for improving dev...
Incorporating ethylene glycols (EGs) into organic semiconductors has become the prominent strategy t...
Incorporating ethylene glycols (EGs) into organic semiconductors has become the prominent strategy t...
Incorporating ethylene glycols (EGs) into organic semiconductors has become the prominent strategy t...
High dielectric constant organic semiconductors, often obtained by the use of ethylene glycol (EG) s...
Organic semiconductors are a versatile class of materials whose functionality can be tuned extensive...
The low efficiency of organic photovoltaic (OPV) devices has often been attributed to the strong Cou...
Organic semiconductors are a versatile class of materials whose functionality can be tuned extensive...
The low efficiency of organic photovoltaic (OPV) devices has often been attributed to the strong Cou...
Current organic semiconductors for organic photovoltaics (OPV) have relative dielectric constants (r...
The dielectric constant (ϵr) of organic semiconductors is a key material parameter for improving dev...
Incorporating ethylene glycols (EGs) into organic semiconductors has become the prominent strategy t...
Incorporating ethylene glycols (EGs) into organic semiconductors has become the prominent strategy t...
Incorporating ethylene glycols (EGs) into organic semiconductors has become the prominent strategy t...
High dielectric constant organic semiconductors, often obtained by the use of ethylene glycol (EG) s...
Organic semiconductors are a versatile class of materials whose functionality can be tuned extensive...
The low efficiency of organic photovoltaic (OPV) devices has often been attributed to the strong Cou...
Organic semiconductors are a versatile class of materials whose functionality can be tuned extensive...
The low efficiency of organic photovoltaic (OPV) devices has often been attributed to the strong Cou...
Current organic semiconductors for organic photovoltaics (OPV) have relative dielectric constants (r...
The dielectric constant (ϵr) of organic semiconductors is a key material parameter for improving dev...