The short exciton diffusion length associated with most classical organic semiconductors used in organic photovoltaics (5-20 nm) imposes severe limits on the maximum size of the donor and acceptor domains within the photoactive layer of the cell. Identifying materials that are able to transport excitons over longer distances can help advancing our understanding and lead to solar cells with higher efficiency. Here, we measure the exciton diffusion length in a wide range of nonfullerene acceptor molecules using two different experimental techniques based on photocurrent and ultrafast spectroscopy measurements. The acceptors exhibit balanced ambipolar charge transport and surprisingly long exciton diffusion lengths in the range of 20 to 47 nm....
We investigated singlet exciton diffusion in three ITIC derivatives used as electron acceptors in or...
Exciton diffusion in organic materials provides the operational basis for functioning of such device...
We investigated singlet exciton diffusion in three ITIC derivatives used as electron acceptors in or...
The short exciton diffusion length associated with most classical organic semiconductors used in org...
The short exciton diffusion length associated with most classical organic semiconductors used in org...
The short exciton diffusion length associated with most classical organic semiconductors used in org...
The short exciton diffusion length associated with most classical organic semiconductors used in org...
The short-range diffusion length of organic semiconductors severely limits exciton harvesting and ch...
Exciton diffusion plays a decisive role in various organic optoelectronic applications, including la...
Funding: We acknowledge support from the European Commission (European Research Council grant 321305...
The distance that excitons can travel is a key parameter for organic photovoltaic materials. In the ...
Exciton diffusion in organic materials provides the operational basis for functioning of such device...
We investigated singlet exciton diffusion in three ITIC derivatives used as electron acceptors in or...
Exciton diffusion in organic materials provides the operational basis for functioning of such device...
Exciton diffusion in organic materials provides the operational basis for functioning of such device...
We investigated singlet exciton diffusion in three ITIC derivatives used as electron acceptors in or...
Exciton diffusion in organic materials provides the operational basis for functioning of such device...
We investigated singlet exciton diffusion in three ITIC derivatives used as electron acceptors in or...
The short exciton diffusion length associated with most classical organic semiconductors used in org...
The short exciton diffusion length associated with most classical organic semiconductors used in org...
The short exciton diffusion length associated with most classical organic semiconductors used in org...
The short exciton diffusion length associated with most classical organic semiconductors used in org...
The short-range diffusion length of organic semiconductors severely limits exciton harvesting and ch...
Exciton diffusion plays a decisive role in various organic optoelectronic applications, including la...
Funding: We acknowledge support from the European Commission (European Research Council grant 321305...
The distance that excitons can travel is a key parameter for organic photovoltaic materials. In the ...
Exciton diffusion in organic materials provides the operational basis for functioning of such device...
We investigated singlet exciton diffusion in three ITIC derivatives used as electron acceptors in or...
Exciton diffusion in organic materials provides the operational basis for functioning of such device...
Exciton diffusion in organic materials provides the operational basis for functioning of such device...
We investigated singlet exciton diffusion in three ITIC derivatives used as electron acceptors in or...
Exciton diffusion in organic materials provides the operational basis for functioning of such device...
We investigated singlet exciton diffusion in three ITIC derivatives used as electron acceptors in or...