Introducing a cathode modification layer is an effective method to obtaining highly efficient organic solar cells (OSCs) and improving their stability. Herein, we innovatively introduced a double cathode modification layer (SnO2/ZnO) into a non-fullerene OSCs based on PM7:IT-4F and explored the mechanisms. The effects of SnO2/ZnO film on charge carriers transfer in OSCs are studied via a variety of electrical testing methods including Photo-CELIV measurements. As a result, a cathode buffer layer with low recombination rate and high carrier mobility could be introduced, which is beneficial to electron transport and collection. The champion device based on the double cathode modification layer acquires an efficiency of 12.91%, obviously highe...
The molecular structure of cathode interface modification materials can affect the surface morpholog...
By doping ZnO with porphyrin small molecules (FNEZnP-OE and FNEZnP-T) as cathode electron transport ...
N-type tin oxide (n-SnO2) nanoparticle film has shown great potential as an electron transport layer...
In this study, we fabricated a bilayer hybrid organic solar cell with P3HT as the donor and ZnO as t...
Organic solar cells have attracted much attention in the recent years due to their many intrinsic ad...
International audienceThe effect of ZnO buffer layer on the performances of inverted multilayers org...
In this study, a high-performance inverted polymer solar cell (PSC) has been fabricated by incorpora...
The role of cathode buffer layer (CBL) is crucial in determining the power conversion efficiency (PC...
Organic solar cells (OSCs) have acquired much attentions owing to their advantages in terms of solut...
In the present study, we have compared the device performance of poly[4,8-bis(5-(2-ethylhexyl) thiop...
Solution-processed inverted bulk heterojunction (BHJ) organic solar cells (OSCs) are expected to pla...
Photovoltaics is a very promising renewable energy technology that can fulfill a singnificant part o...
Indium tin oxide (ITO) is a transparent conductive material which is extensively used in organic sol...
The effect of ZnO buffer layer on the performances of inverted multilayers organic solar cells has b...
Indium tin oxide (ITO) is a transparent conductive material which is extensively used in organic sol...
The molecular structure of cathode interface modification materials can affect the surface morpholog...
By doping ZnO with porphyrin small molecules (FNEZnP-OE and FNEZnP-T) as cathode electron transport ...
N-type tin oxide (n-SnO2) nanoparticle film has shown great potential as an electron transport layer...
In this study, we fabricated a bilayer hybrid organic solar cell with P3HT as the donor and ZnO as t...
Organic solar cells have attracted much attention in the recent years due to their many intrinsic ad...
International audienceThe effect of ZnO buffer layer on the performances of inverted multilayers org...
In this study, a high-performance inverted polymer solar cell (PSC) has been fabricated by incorpora...
The role of cathode buffer layer (CBL) is crucial in determining the power conversion efficiency (PC...
Organic solar cells (OSCs) have acquired much attentions owing to their advantages in terms of solut...
In the present study, we have compared the device performance of poly[4,8-bis(5-(2-ethylhexyl) thiop...
Solution-processed inverted bulk heterojunction (BHJ) organic solar cells (OSCs) are expected to pla...
Photovoltaics is a very promising renewable energy technology that can fulfill a singnificant part o...
Indium tin oxide (ITO) is a transparent conductive material which is extensively used in organic sol...
The effect of ZnO buffer layer on the performances of inverted multilayers organic solar cells has b...
Indium tin oxide (ITO) is a transparent conductive material which is extensively used in organic sol...
The molecular structure of cathode interface modification materials can affect the surface morpholog...
By doping ZnO with porphyrin small molecules (FNEZnP-OE and FNEZnP-T) as cathode electron transport ...
N-type tin oxide (n-SnO2) nanoparticle film has shown great potential as an electron transport layer...