The majority of organic semiconductors have a low relative dielectric constant (ϵr < 6), which is an important limitation for organic solar cells (OSCs). A high dielectric constant would reduce the exciton binding energy, reduce charge carrier recombination losses, and thereby enhance the overall device performance of OSCs. However, the development of organic/polymeric semiconductors with higher relative dielectric constants (ϵr > 6) has attracted a very limited attention. Moreover, high performance OSCs based on high dielectric constant photovoltaic materials are still in their infancy. Herein, we report an oligoethylene oxide side chain-containing non-fullerene acceptor (ITIC-OE) with a high relative dielectric constant of ϵr ≈ 9.4,...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven...
The use of non-fullerene acceptors in organic photovoltaic (OPV) devices could lead to enhanced effi...
The majority of organic semiconductors have a low relative dielectric constant (ϵr < 6), which is...
Organic solar cells bear the potential to develop a long-term technology that is environmentally cle...
The low dielectric constants of conventional organic semiconductors leads to poor charge carrier pho...
First published: 11 August 2021 OnlinePublBulk heterojunction organic solar cells continue to show s...
The photovoltaic and electrical properties of organic semiconductors are characterized by their low ...
Conjugated polymers applied in organic electronics (notably photovoltaics and photodetectors) genera...
The low dielectric constant of organic semiconductors limits the efficiency of organic solar cells (...
Organic semiconductors are a versatile class of materials whose functionality can be tuned extensive...
A new n-type organic semiconductor (n-OS) acceptor IDTPC with n-hexyl side chains is developed. Comp...
Current organic semiconductors for organic photovoltaics (OPV) have relative dielectric constants (r...
The strength of dielectric screening is one of the most intriguing yet least studied contributing fa...
The goal of this PhD research project was to develop fullerene derivatives with enhanced dielectric ...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven...
The use of non-fullerene acceptors in organic photovoltaic (OPV) devices could lead to enhanced effi...
The majority of organic semiconductors have a low relative dielectric constant (ϵr < 6), which is...
Organic solar cells bear the potential to develop a long-term technology that is environmentally cle...
The low dielectric constants of conventional organic semiconductors leads to poor charge carrier pho...
First published: 11 August 2021 OnlinePublBulk heterojunction organic solar cells continue to show s...
The photovoltaic and electrical properties of organic semiconductors are characterized by their low ...
Conjugated polymers applied in organic electronics (notably photovoltaics and photodetectors) genera...
The low dielectric constant of organic semiconductors limits the efficiency of organic solar cells (...
Organic semiconductors are a versatile class of materials whose functionality can be tuned extensive...
A new n-type organic semiconductor (n-OS) acceptor IDTPC with n-hexyl side chains is developed. Comp...
Current organic semiconductors for organic photovoltaics (OPV) have relative dielectric constants (r...
The strength of dielectric screening is one of the most intriguing yet least studied contributing fa...
The goal of this PhD research project was to develop fullerene derivatives with enhanced dielectric ...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven...
Optimization of the energy levels at the donor–acceptor interface of organic solar cells has driven...
The use of non-fullerene acceptors in organic photovoltaic (OPV) devices could lead to enhanced effi...