We demonstrate how organic solar cell efficiency can be increased by introducing a pure polymer interlayer between the PEDOT:PSS layer and the polymer: fullerene blend. We observe an increase in device efficiency with three different material systems over a number of devices. Using both electrical characterization and numerical modeling we show that the increase in efficiency is caused by optical absorption in the pure polymer layer and hence efficient charge separation at the polymer bulkheterojunction interface
In the most efficient plastic solar cells to date, sunlight is absorbed in an ultrathin layer of a s...
ABSTRACT We have developed polymer solar cells featuring a buffer layer of polythiophene (PT) sandwi...
By engineering the interface between the intermediate photoactive layer and the cathode aluminum (Al...
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...
We demonstrate how organic solar cell efficiency can be increased by introducing a pure polymer inte...
Polymer solar cells based on the polyfluorene copolymer poly[9,9-didecanefluorene-alt-(bis-thienylen...
Polymer solar cells based on the polyfluorene copolymer poly[9,9-didecanefluorene-alt-(bis-thienylen...
Polymer solar cells based on the polyfluorene copolymer poly[9,9-didecanefluorene-alt-(bis-thienylen...
Polymer photovoltaic cells with organic polymer materials as the active layers for an increasing pow...
Improving power conversion efficiency and device performance stability is the most critical challeng...
We employed a low-cost solution-processed ultrathin insulating polymeric layer of poly(4-hydroxystyr...
Improving power conversion efficiency and device performance stability is the most critical challeng...
Polymer solar cells have drawn a great deal of attention due to the attractiveness of their use in r...
In the most efficient plastic solar cells to date, sunlight is absorbed in an ultrathin layer of a s...
ABSTRACT We have developed polymer solar cells featuring a buffer layer of polythiophene (PT) sandwi...
By engineering the interface between the intermediate photoactive layer and the cathode aluminum (Al...
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...
We demonstrate how organic solar cell efficiency can be increased by introducing a pure polymer inte...
Polymer solar cells based on the polyfluorene copolymer poly[9,9-didecanefluorene-alt-(bis-thienylen...
Polymer solar cells based on the polyfluorene copolymer poly[9,9-didecanefluorene-alt-(bis-thienylen...
Polymer solar cells based on the polyfluorene copolymer poly[9,9-didecanefluorene-alt-(bis-thienylen...
Polymer photovoltaic cells with organic polymer materials as the active layers for an increasing pow...
Improving power conversion efficiency and device performance stability is the most critical challeng...
We employed a low-cost solution-processed ultrathin insulating polymeric layer of poly(4-hydroxystyr...
Improving power conversion efficiency and device performance stability is the most critical challeng...
Polymer solar cells have drawn a great deal of attention due to the attractiveness of their use in r...
In the most efficient plastic solar cells to date, sunlight is absorbed in an ultrathin layer of a s...
ABSTRACT We have developed polymer solar cells featuring a buffer layer of polythiophene (PT) sandwi...
By engineering the interface between the intermediate photoactive layer and the cathode aluminum (Al...