Printing of active layers of high-efficiency organic solar cells and morphology control by processing with varying solvent additive concentrations are important to realize realworld use of bulk-heterojunction photovoltaics as it enables both up-scaling and optimization of the device performance. In this work, active layers of the conjugated polymer with benzodithiophene units PBDB-T-SF and the nonfullerene small molecule acceptor IT-4F are printed using meniscus guided slot-die coating. 1,8-Diiodooctane (DIO) is added to optimize the power conversion efficiency (PCE). The effect on the inner nanostructure and surface morphology of the material is studied for different solvent additive concentrations with grazing incidence small-angle X-ray scatte...
In this study, we report the investigation of the influence of binary processing additives, 1,8-octa...
We use solvent additives as a simple method to tune the photovoltaic performance of poly-3-hexylthio...
© 2019 by the authors. The nanoscale morphology of poly(3-hexylthiophene) (P3HT) and [6,6]-phenyl-C ...
Organic bulk heterojunction solar cells use polymer thin film technology which is cost effective, fl...
Printing of active layers for high‐efficiency organic solar cells with the slot‐die coating techniqu...
The performance of bulk heterojunction polymer solar cells is profoundly influenced by the spatial a...
In the polymer photovoltaic devices (PVDs), the performance of devices was strongly influenced by re...
The development of polymer morphology and crystallinity of printed bulk heterojunction (BHJ) films d...
Active layer morphology of polymer-based solar cells plays an important role in improving power conv...
The nanoscale morphology of poly(3-hexylthiophene) (P3HT) and [6,6]-phenyl-C71. butyric acid methyle...
More environmentally friendly polymer solar cells were constructed using a conjugated polymer, poly ...
In this study, we report the investigation of the influence of binary processing additives, 1,8-octa...
In situ printing gives insight into the evolution of morphology and optical properties during slot-d...
All-polymer and polymer/fullerene inverted solar cells were fabricated by spin-coating and roll-coat...
The use of solvent additives in the fabrication of bulk heterojunction polymer:fullerene solar cells...
In this study, we report the investigation of the influence of binary processing additives, 1,8-octa...
We use solvent additives as a simple method to tune the photovoltaic performance of poly-3-hexylthio...
© 2019 by the authors. The nanoscale morphology of poly(3-hexylthiophene) (P3HT) and [6,6]-phenyl-C ...
Organic bulk heterojunction solar cells use polymer thin film technology which is cost effective, fl...
Printing of active layers for high‐efficiency organic solar cells with the slot‐die coating techniqu...
The performance of bulk heterojunction polymer solar cells is profoundly influenced by the spatial a...
In the polymer photovoltaic devices (PVDs), the performance of devices was strongly influenced by re...
The development of polymer morphology and crystallinity of printed bulk heterojunction (BHJ) films d...
Active layer morphology of polymer-based solar cells plays an important role in improving power conv...
The nanoscale morphology of poly(3-hexylthiophene) (P3HT) and [6,6]-phenyl-C71. butyric acid methyle...
More environmentally friendly polymer solar cells were constructed using a conjugated polymer, poly ...
In this study, we report the investigation of the influence of binary processing additives, 1,8-octa...
In situ printing gives insight into the evolution of morphology and optical properties during slot-d...
All-polymer and polymer/fullerene inverted solar cells were fabricated by spin-coating and roll-coat...
The use of solvent additives in the fabrication of bulk heterojunction polymer:fullerene solar cells...
In this study, we report the investigation of the influence of binary processing additives, 1,8-octa...
We use solvent additives as a simple method to tune the photovoltaic performance of poly-3-hexylthio...
© 2019 by the authors. The nanoscale morphology of poly(3-hexylthiophene) (P3HT) and [6,6]-phenyl-C ...