An all-inclusive investigation of the effect of postprocessing thermal treatment on all vacuum-deposited small-molecule organic solar cells (SM-OSC) is presented. Herein, DTDCTB is chosen as the donor (D) molecule, and three fullerene-derivative acceptor (A) molecules, namely, ICBA, C70, and C60, are chosen for the study, and the devices were optimized for PV. As the first step, OSC cells were fabricated and characterized for photophysical, morphology, as well as various photovoltaic parameters, such as VOC, JSC, FF, and η, and external quantum efficiency for different processing parameters, such as active layer concentration ratios and annealing temperatures. The devices based on ICBA were found to have outperformed the devices using C70 a...
Organic solar cells (OSCs) have made very good improvements in recent years, reaching power conversi...
Organic solar cells (OSCs) are a next-generation photovoltaic technology that convert solar energy t...
In this study, we demonstrate that remarkably reduced open-circuit voltage in highly efficient organ...
This thesis discusses vacuum deposited organic solar cells. It focuses on the investigation of new d...
Photovoltaic devices that directly convert sunlight to electrical power have the potential to genera...
Vacuum-deposited small-molecule organic solar cells based on DTDCTB (donor) and C70 (acceptor) molec...
We explore two small molecules containing arms of dicyano-n-hexylrhodanine and diathiafulvalene wing...
The control of morphology and microstructure during and after the active layer processing of bulk-he...
We explored relationships between photophysical processes and solar cell characteristics in solution...
This thesis tried to improve on the efficiency of organic solar cells based on small molecules. Ther...
AbstractBulk heterojunction organic solar cells have been fabricated based on PCDTBT:PC71BM blend in...
Selective optimisation of light harvesting materials and interface properties has brought breakthrou...
This thesis tried to improve on the efficiency of organic solar cells based on small molecules. Ther...
The greater crystallinity of solution-processed small-molecule organic semiconductors, compared to t...
AbstractBulk heterojunction solar cells made by vacuum co-evaporation of polythiophene (PTh) and ful...
Organic solar cells (OSCs) have made very good improvements in recent years, reaching power conversi...
Organic solar cells (OSCs) are a next-generation photovoltaic technology that convert solar energy t...
In this study, we demonstrate that remarkably reduced open-circuit voltage in highly efficient organ...
This thesis discusses vacuum deposited organic solar cells. It focuses on the investigation of new d...
Photovoltaic devices that directly convert sunlight to electrical power have the potential to genera...
Vacuum-deposited small-molecule organic solar cells based on DTDCTB (donor) and C70 (acceptor) molec...
We explore two small molecules containing arms of dicyano-n-hexylrhodanine and diathiafulvalene wing...
The control of morphology and microstructure during and after the active layer processing of bulk-he...
We explored relationships between photophysical processes and solar cell characteristics in solution...
This thesis tried to improve on the efficiency of organic solar cells based on small molecules. Ther...
AbstractBulk heterojunction organic solar cells have been fabricated based on PCDTBT:PC71BM blend in...
Selective optimisation of light harvesting materials and interface properties has brought breakthrou...
This thesis tried to improve on the efficiency of organic solar cells based on small molecules. Ther...
The greater crystallinity of solution-processed small-molecule organic semiconductors, compared to t...
AbstractBulk heterojunction solar cells made by vacuum co-evaporation of polythiophene (PTh) and ful...
Organic solar cells (OSCs) have made very good improvements in recent years, reaching power conversi...
Organic solar cells (OSCs) are a next-generation photovoltaic technology that convert solar energy t...
In this study, we demonstrate that remarkably reduced open-circuit voltage in highly efficient organ...