Inverted organic solar cells by bulk-heterojunctions were fabricated using TiO2 and ZnO as electron extraction layers. Electrospray deposition was applied to fabricate trilayer structures with thin donor and acceptor layers sandwiching bulk-heterojunction layers. Comparing to single layer devices, trilayer devices show significantly enhanced stability in device performances under continuous illumination in air. Conventional structure devices with Al as electron extraction layer were also compared showing how the improvement achieved with the inverted architecture is surprisingly higher. Our results, on a basis of 4 h of continuous operations, show how combining inverted device architecture with trilayer configuration is a viable approach in...
Chemical bath deposited titanium oxide (TiOx) as an electron collection layer is introduced between ...
Inverted bulk heterojunction organic solar cells having device structure ITO/ZnO/poly(3-hexylthiophe...
The architecture of a polymer solar cell plays a crucial role on its stability because some of the m...
Inverted organic solar cells by bulk-heterojunctions were fabricated using TiO2 and ZnO as electron ...
Bulk heterojunction (BHJ) polymer solar cells (PSCs) that can be fabricated by solution processing t...
AbstractBulk heterojunction (BHJ) polymer solar cells (PSCs) that can be fabricated by solution proc...
Bulk heterojunction (BHJ) polymer solar cells (PSCs) that can be fabricated by solution processing t...
Electrospray deposition (ESD) for the fabrication of multilayered (ML) bulk heterojunction polymeric...
A substantial increase in device performance and operational stability in solution processed inverte...
Bulk heterojunction (BHJ) polymer solar cells (PSCs) that can be fabricated by solution processing t...
Bulk heterojunctions continue to be the dominant architecture for solution processed organic solar c...
Over the last few decades, bulk-heterojunction organic photovoltaic devices comprising an intimately...
Bulk heterojunctions continue to be the dominant architecture for solution processed organic solar c...
In this work, we introduce a solution-processed CdS interlayer for use in inverted bulk heterojuncti...
Bulk heterojunction polymer solar cells (BHJ PSCs) are very promising organic-based devices for low-...
Chemical bath deposited titanium oxide (TiOx) as an electron collection layer is introduced between ...
Inverted bulk heterojunction organic solar cells having device structure ITO/ZnO/poly(3-hexylthiophe...
The architecture of a polymer solar cell plays a crucial role on its stability because some of the m...
Inverted organic solar cells by bulk-heterojunctions were fabricated using TiO2 and ZnO as electron ...
Bulk heterojunction (BHJ) polymer solar cells (PSCs) that can be fabricated by solution processing t...
AbstractBulk heterojunction (BHJ) polymer solar cells (PSCs) that can be fabricated by solution proc...
Bulk heterojunction (BHJ) polymer solar cells (PSCs) that can be fabricated by solution processing t...
Electrospray deposition (ESD) for the fabrication of multilayered (ML) bulk heterojunction polymeric...
A substantial increase in device performance and operational stability in solution processed inverte...
Bulk heterojunction (BHJ) polymer solar cells (PSCs) that can be fabricated by solution processing t...
Bulk heterojunctions continue to be the dominant architecture for solution processed organic solar c...
Over the last few decades, bulk-heterojunction organic photovoltaic devices comprising an intimately...
Bulk heterojunctions continue to be the dominant architecture for solution processed organic solar c...
In this work, we introduce a solution-processed CdS interlayer for use in inverted bulk heterojuncti...
Bulk heterojunction polymer solar cells (BHJ PSCs) are very promising organic-based devices for low-...
Chemical bath deposited titanium oxide (TiOx) as an electron collection layer is introduced between ...
Inverted bulk heterojunction organic solar cells having device structure ITO/ZnO/poly(3-hexylthiophe...
The architecture of a polymer solar cell plays a crucial role on its stability because some of the m...