<font face="times new roman,times" size="2">Simultaneous enhancement of open-circuit voltage, short-circuit current density, and fill factor in highly efficient polymer solar cells by incorporating an alcohol/water-soluble conjugated polymer as cathode interlayer is domonstrated. When combined with a low-bandgap polymer PTB7 as the electron donor material, the power efficiency of the devices is improved to a certified 8.370%. Due to the drastic improvement in efficiency and easy utilization, this method opens new opportunities for PSCs from various material systems to improve towards 10% efficiency.</font
We demonstrate how organic solar cell efficiency can be increased by introducing a pure polymer inte...
We demonstrate how organic solar cell efficiency can be increased by introducing a pure polymer inte...
A novel polymer is developed and used as underlying interlayer to improve donor polymer/acceptor mat...
A novel non-conjugated small-molecule electrolyte was invented as a cathode interlayer in PTB7:PC71B...
We present a smart strategy to simultaneously increase the short circuit current (<i>J</i><sub>sc</s...
The power conversion efficiency of PTB7:PC71BM polymer solar cells was improved to 9.1% by treatment...
Dramatic recent improvements in design and fabrication of bulk hetero-junction (BHJ) polymer-contain...
Small-bandgap polymer solar cells (PSCs) with a thick bulk heterojunction film of 340 nm exhibit hig...
Various low ratios of triplet iridium complexes (0, 0.5, 1, 1.5, 2.5, and 5 mol%) are conjugated to ...
Polymer solar cells have drawn a great deal of attention due to the attractiveness of their use in r...
We demonstrate how organic solar cell efficiency can be increased by introducing a pure polymer inte...
We demonstrate how organic solar cell efficiency can be increased by introducing a pure polymer inte...
We demonstrate how organic solar cell efficiency can be increased by introducing a pure polymer inte...
A non-conjugated polymer poly(vinylpyrrolidone) (PVP) was applied as a new cathode buffer layer in ...
The emerging field of tandem polymer solar cells (TPSCs) enables a feasible approach to deal with th...
We demonstrate how organic solar cell efficiency can be increased by introducing a pure polymer inte...
We demonstrate how organic solar cell efficiency can be increased by introducing a pure polymer inte...
A novel polymer is developed and used as underlying interlayer to improve donor polymer/acceptor mat...
A novel non-conjugated small-molecule electrolyte was invented as a cathode interlayer in PTB7:PC71B...
We present a smart strategy to simultaneously increase the short circuit current (<i>J</i><sub>sc</s...
The power conversion efficiency of PTB7:PC71BM polymer solar cells was improved to 9.1% by treatment...
Dramatic recent improvements in design and fabrication of bulk hetero-junction (BHJ) polymer-contain...
Small-bandgap polymer solar cells (PSCs) with a thick bulk heterojunction film of 340 nm exhibit hig...
Various low ratios of triplet iridium complexes (0, 0.5, 1, 1.5, 2.5, and 5 mol%) are conjugated to ...
Polymer solar cells have drawn a great deal of attention due to the attractiveness of their use in r...
We demonstrate how organic solar cell efficiency can be increased by introducing a pure polymer inte...
We demonstrate how organic solar cell efficiency can be increased by introducing a pure polymer inte...
We demonstrate how organic solar cell efficiency can be increased by introducing a pure polymer inte...
A non-conjugated polymer poly(vinylpyrrolidone) (PVP) was applied as a new cathode buffer layer in ...
The emerging field of tandem polymer solar cells (TPSCs) enables a feasible approach to deal with th...
We demonstrate how organic solar cell efficiency can be increased by introducing a pure polymer inte...
We demonstrate how organic solar cell efficiency can be increased by introducing a pure polymer inte...
A novel polymer is developed and used as underlying interlayer to improve donor polymer/acceptor mat...