Indium tin oxide (ITO) is commonly used as the transparent bottom electrode for organic solar cells. However, it is known that the cost of the ITO is quite high due to the indium element, and in some studies ITO coated glass substrate is found to be the most expensive component of device fabrication. Moreover, indium migration from ITO can cause stability issues in organic solar cells. Nevertheless, the use of ITO as the bottom electrode is still dominating in the field. Here, we explore the possibility of using fluorine doped tin oxide (FTO) as an alternative to ITO for the bottom electrode of organic solar cells particularly on semi-transparent cells. We present side-by-side comparisons on their optical, morphological and device propertie...
As an alternative to indium-tin oxide (ITO), MTO/Ag/MTO (MAM) multilayer transparent electrodes with...
The presence of a transparent conductive electrode such as indium tin oxide (ITO) limits the reliabi...
The rising adoption of solar cells worldwide necessitates reducing solar cell costs, enhancing cell ...
Indium tin oxide (ITO) is commonly used as the transparent bottom electrode for organic solar cells....
Organic solar cells offer attractive properties for novel applications and continuous advances in ma...
With the increasing demand for energy that human beings are faced with, the photovoltaics (PV) techn...
Depending on their resistivity and their transmittance, the thin films of transparent conductive oxi...
Organic solar cells and organic light emitting diodes are on the forefront of emerging technologies...
The charge generation properties at all interfaces of a p/np∕n junction, bilayer photodiode have bee...
The authors compare organic solar cells using two different transparent conductive oxides as anode: ...
We present a performance comparison of polythiophene/fullerene derivative bulk heterojunction solar ...
Additional hydrogen (H2) annealing and subsequent electrochemical treatment are found to make tin-do...
International audienceFluorine doped transparent conductive tin oxide thin films (FTO) of different ...
In this paper, atmospheric pressure chemical vapor deposition of fluorine-doped tin oxide (FTO) thin...
Indium-doped tin oxide (ITO) is the transparent conductive material of choice for a wide range of op...
As an alternative to indium-tin oxide (ITO), MTO/Ag/MTO (MAM) multilayer transparent electrodes with...
The presence of a transparent conductive electrode such as indium tin oxide (ITO) limits the reliabi...
The rising adoption of solar cells worldwide necessitates reducing solar cell costs, enhancing cell ...
Indium tin oxide (ITO) is commonly used as the transparent bottom electrode for organic solar cells....
Organic solar cells offer attractive properties for novel applications and continuous advances in ma...
With the increasing demand for energy that human beings are faced with, the photovoltaics (PV) techn...
Depending on their resistivity and their transmittance, the thin films of transparent conductive oxi...
Organic solar cells and organic light emitting diodes are on the forefront of emerging technologies...
The charge generation properties at all interfaces of a p/np∕n junction, bilayer photodiode have bee...
The authors compare organic solar cells using two different transparent conductive oxides as anode: ...
We present a performance comparison of polythiophene/fullerene derivative bulk heterojunction solar ...
Additional hydrogen (H2) annealing and subsequent electrochemical treatment are found to make tin-do...
International audienceFluorine doped transparent conductive tin oxide thin films (FTO) of different ...
In this paper, atmospheric pressure chemical vapor deposition of fluorine-doped tin oxide (FTO) thin...
Indium-doped tin oxide (ITO) is the transparent conductive material of choice for a wide range of op...
As an alternative to indium-tin oxide (ITO), MTO/Ag/MTO (MAM) multilayer transparent electrodes with...
The presence of a transparent conductive electrode such as indium tin oxide (ITO) limits the reliabi...
The rising adoption of solar cells worldwide necessitates reducing solar cell costs, enhancing cell ...