The deep study of solvent annealed small molecules bulk heterojunction organic solar cells based on DPP(TBFu)2 : PC60BM blend is carried out. To reveal the reason of the solvent annealing advantage over the thermal one, capacitance-voltage measurements were applied. It was found that controlling the vertical phase segregation in the solar cells a high fullerene population in the vicinity of the cathode could be achieved. This results in increase of the shunt resistance of the cell, thus improving the light harvesting efficiency
The morphology of the active layer in polymer:fullerene solar cells is a key parameter for the perfo...
The physical nature of solvent vapor annealing (SVA) treatment is quite straightforward, and its app...
In bulk-heterojunction solar cells, the device performance strongly depends on the donor and accepto...
Solvent vapor annealing has been widely used in organic photovoltaics (OPV) to tune the morphology o...
In organic bulk-heterojunction solar cells, the vertical distribution of the composition of the acti...
The morphology control and optimization in the film-forming process and nanoscale phase separation o...
We present a numerical model for calculating current-voltage characteristics of polymer:fullerene bu...
The physical nature of solvent vapor annealing (SVA) treatment is quite straightforward, and its app...
The morphology of organic active layer plays a crucial role in the performance of organic solar cell...
Solar cells are promising alternatives to fossil fuels as they provide a clean source of renewable e...
Fine-tuning nano/micro-structural morphologies and their depth studies in small-molecule solar cells...
The device performance of photovoltaics with a polymer: fullerene bulk heterojunction (BHJ) structur...
Vertical phase separation of the donor and the acceptor in organic bulk heterojunction solar cells i...
In this paper, mixed-solvent vapor annealing (M-SVA) was proposed to improve polymer crystallinity a...
Currently, one of the most efficient PSCs is the system based on regioregular poly(3-hexylthiophene)...
The morphology of the active layer in polymer:fullerene solar cells is a key parameter for the perfo...
The physical nature of solvent vapor annealing (SVA) treatment is quite straightforward, and its app...
In bulk-heterojunction solar cells, the device performance strongly depends on the donor and accepto...
Solvent vapor annealing has been widely used in organic photovoltaics (OPV) to tune the morphology o...
In organic bulk-heterojunction solar cells, the vertical distribution of the composition of the acti...
The morphology control and optimization in the film-forming process and nanoscale phase separation o...
We present a numerical model for calculating current-voltage characteristics of polymer:fullerene bu...
The physical nature of solvent vapor annealing (SVA) treatment is quite straightforward, and its app...
The morphology of organic active layer plays a crucial role in the performance of organic solar cell...
Solar cells are promising alternatives to fossil fuels as they provide a clean source of renewable e...
Fine-tuning nano/micro-structural morphologies and their depth studies in small-molecule solar cells...
The device performance of photovoltaics with a polymer: fullerene bulk heterojunction (BHJ) structur...
Vertical phase separation of the donor and the acceptor in organic bulk heterojunction solar cells i...
In this paper, mixed-solvent vapor annealing (M-SVA) was proposed to improve polymer crystallinity a...
Currently, one of the most efficient PSCs is the system based on regioregular poly(3-hexylthiophene)...
The morphology of the active layer in polymer:fullerene solar cells is a key parameter for the perfo...
The physical nature of solvent vapor annealing (SVA) treatment is quite straightforward, and its app...
In bulk-heterojunction solar cells, the device performance strongly depends on the donor and accepto...