Charge transfer efficiency at the organic/transparent conducting oxide (TCO) interface is one of the key parameters controlling the overall efficiency of organic photovoltaics (OPVs). Modification of this interface with a redox-active organic surface modifier may further enhance the charge transfer across the interface by providing a charge-transfer pathway between the electrode and the organic active layer. Functionalized perylene diimide molecules (PDI) are useful for modifying metal oxide/acceptor interfaces for inverted solar cell devices because their LUMO energy level is close to some commonly used acceptor molecules. The effects of PDI structural parameters on the interfacial charge transfer processes across the organic/ITO interface...
The efficiency of photoconversion systems such as organic photovoltaic cells and photocatalytic wate...
Organic electronics based on organic semiconductors offer tremendous advantages compared to traditio...
The overall efficiency of organic photovoltaics cells (OPVs) is influenced by the nature of the char...
The charge collection efficiency at organic semiconductor/transparent conducting oxide (TCO) interfa...
Chemisorption of an organic monolayer to tune the surface properties of a transparent conductive oxi...
Charge-transfer efficiency at the active layer/transparent conducting oxide (TCO) interface is thoug...
Charge transfer efficiency at organic/electrode interfaces affects the performance organic photovolt...
To improve the overall efficiency of an organic photovoltaic (OPV) device, the charge transfer at th...
Solar energy conversion is accomplished by multilayered devices consisting of various conducting and...
Solar energy conversion is accomplished by multilayered devices consisting of various conducting and...
Perylenediimide (PDI) derivatives are lightfast red dyes that exhibit excellent optical and electron...
Organic electronics is a field covering all applications and devices where one or several of the act...
The role of the oxide/organic and organic/organic interfaces in small-molecule planar-Heterojunction...
Ultrafast interfacial charge transfer (CT), charge separation (CS), and charge recombination (CR), a...
The role of the transparent conducting oxide (TCO) and the organic donor material interface in small...
The efficiency of photoconversion systems such as organic photovoltaic cells and photocatalytic wate...
Organic electronics based on organic semiconductors offer tremendous advantages compared to traditio...
The overall efficiency of organic photovoltaics cells (OPVs) is influenced by the nature of the char...
The charge collection efficiency at organic semiconductor/transparent conducting oxide (TCO) interfa...
Chemisorption of an organic monolayer to tune the surface properties of a transparent conductive oxi...
Charge-transfer efficiency at the active layer/transparent conducting oxide (TCO) interface is thoug...
Charge transfer efficiency at organic/electrode interfaces affects the performance organic photovolt...
To improve the overall efficiency of an organic photovoltaic (OPV) device, the charge transfer at th...
Solar energy conversion is accomplished by multilayered devices consisting of various conducting and...
Solar energy conversion is accomplished by multilayered devices consisting of various conducting and...
Perylenediimide (PDI) derivatives are lightfast red dyes that exhibit excellent optical and electron...
Organic electronics is a field covering all applications and devices where one or several of the act...
The role of the oxide/organic and organic/organic interfaces in small-molecule planar-Heterojunction...
Ultrafast interfacial charge transfer (CT), charge separation (CS), and charge recombination (CR), a...
The role of the transparent conducting oxide (TCO) and the organic donor material interface in small...
The efficiency of photoconversion systems such as organic photovoltaic cells and photocatalytic wate...
Organic electronics based on organic semiconductors offer tremendous advantages compared to traditio...
The overall efficiency of organic photovoltaics cells (OPVs) is influenced by the nature of the char...