Efficient energy transport is desirable in organic semiconductor (OSC) devices. However, photogenerated excitons in OSC films mostly occupy highly localized states, limiting exciton diffusion coefficients to below ~10−2 cm2/s and diffusion lengths below ~50 nm. We use ultrafast optical microscopy and nonadiabatic molecular dynamics simulations to study well-ordered poly(3-hexylthiophene) nanofiber films prepared using living crystallization-driven self-assembly, and reveal a highly efficient energy transport regime: transient exciton delocalization, where energy exchange with vibrational modes allows excitons to temporarily re-access spatially extended states under equilibrium conditions. We show that this enables exciton diffusion constant...
Exciton transport in organic semiconductors is a critical, mediating process in many optoelectronic ...
Singlet exciton diffusion was studied in the efficient organic photovoltaic electron donor material ...
Exciton diffusion plays a decisive role in various organic optoelectronic applications, including la...
Efficient energy transport is desirable in organic semiconductor (OSC) devices. However, photogenera...
Efficient energy transport is desirable in organic semiconductor (OSC) devices. However, photogenera...
The distance that excitons can travel is a key parameter for organic photovoltaic materials. In the ...
Modest exciton diffusion lengths dictate the need for nanostructured bulk heterojunctions in organic...
Modest exciton diffusion lengths dictate the need for nanostructured bulk heterojunctions in organic...
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...
Organic semiconductors can potentially revolutionize solar cell technology by offering very thin, li...
The short exciton diffusion length associated with most classical organic semiconductors used in org...
Organic semiconductors can potentially revolutionize solar cell technology by offering very thin, li...
In solar energy conversion systems, crucial steps governing the performance of photovoltaic cells in...
Exciton transport in organic semiconductors is a critical, mediating process in many optoelectronic ...
Singlet exciton diffusion was studied in the efficient organic photovoltaic electron donor material ...
Exciton diffusion plays a decisive role in various organic optoelectronic applications, including la...
Efficient energy transport is desirable in organic semiconductor (OSC) devices. However, photogenera...
Efficient energy transport is desirable in organic semiconductor (OSC) devices. However, photogenera...
The distance that excitons can travel is a key parameter for organic photovoltaic materials. In the ...
Modest exciton diffusion lengths dictate the need for nanostructured bulk heterojunctions in organic...
Modest exciton diffusion lengths dictate the need for nanostructured bulk heterojunctions in organic...
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...
Organic semiconductors can potentially revolutionize solar cell technology by offering very thin, li...
The short exciton diffusion length associated with most classical organic semiconductors used in org...
Organic semiconductors can potentially revolutionize solar cell technology by offering very thin, li...
In solar energy conversion systems, crucial steps governing the performance of photovoltaic cells in...
Exciton transport in organic semiconductors is a critical, mediating process in many optoelectronic ...
Singlet exciton diffusion was studied in the efficient organic photovoltaic electron donor material ...
Exciton diffusion plays a decisive role in various organic optoelectronic applications, including la...