The characteristics of transparent ITO/Ag-Pd-Cu (APC)/ITO multilayer cathodes were investigated for use in inverted organic solar cells (IOSCs). The insertion of an APC interlayer into the ITO film effectively led to crystallization of the top ITO layer, unlike that in the Ag interlayer, and resulted in a low sheet resistance of 6.55 Ohm/square and a high optical transmittance of 84.14% without post annealing. In addition, the alloying of the Pd and Cu elements into Ag prevented agglomeration and oxidization of the metal interlayer and led to more stable ITO/APC/ITO films under ambient conditions. The microstructure and interfacial structure of the transparent ITO/APC/ITO cathode in the IOSCs were examined in detail by synchrotron X-ray sca...
In this dissertation, systematic study on organic solar cells (OSCs) with inverted and tandem struct...
Inverted polymer solar cells with a bottom metal cathode modified by a conjugated polymer interlayer...
This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions f...
Indium tin oxide (ITO)-free inverted polymer solar cells (PSCs) have been fabricated without the nee...
ipei 1 (ITO), which exhibited high transmittance in the visible regime. The device performance of th...
Organic solar cells offer attractive properties for novel applications and continuous advances in ma...
Organic photovoltaic cells based on the multilayers structure, indium tin oxide (ITO)/copper-phtha...
AbstractThe development of electrodes on polymeric substrates for organic electronics requires depos...
As an alternative to indium-tin oxide (ITO), MTO/Ag/MTO (MAM) multilayer transparent electrodes with...
International audienceOne possible alternative to ITO, the most commonly used transparent and conduc...
Indium tin oxide (ITO) is a transparent conductive material which is extensively used in organic sol...
We present metal multilayers consisting of aluminum and silver in different combinations serving as ...
We present zinc phthalocyanine (ZnPc): C60 bulk-heterojunction top-illuminated organic solar cells u...
Indium tin oxide (ITO) is a transparent conductive material which is extensively used in organic sol...
The presence of a transparent conductive electrode such as indium tin oxide (ITO) limits the reliabi...
In this dissertation, systematic study on organic solar cells (OSCs) with inverted and tandem struct...
Inverted polymer solar cells with a bottom metal cathode modified by a conjugated polymer interlayer...
This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions f...
Indium tin oxide (ITO)-free inverted polymer solar cells (PSCs) have been fabricated without the nee...
ipei 1 (ITO), which exhibited high transmittance in the visible regime. The device performance of th...
Organic solar cells offer attractive properties for novel applications and continuous advances in ma...
Organic photovoltaic cells based on the multilayers structure, indium tin oxide (ITO)/copper-phtha...
AbstractThe development of electrodes on polymeric substrates for organic electronics requires depos...
As an alternative to indium-tin oxide (ITO), MTO/Ag/MTO (MAM) multilayer transparent electrodes with...
International audienceOne possible alternative to ITO, the most commonly used transparent and conduc...
Indium tin oxide (ITO) is a transparent conductive material which is extensively used in organic sol...
We present metal multilayers consisting of aluminum and silver in different combinations serving as ...
We present zinc phthalocyanine (ZnPc): C60 bulk-heterojunction top-illuminated organic solar cells u...
Indium tin oxide (ITO) is a transparent conductive material which is extensively used in organic sol...
The presence of a transparent conductive electrode such as indium tin oxide (ITO) limits the reliabi...
In this dissertation, systematic study on organic solar cells (OSCs) with inverted and tandem struct...
Inverted polymer solar cells with a bottom metal cathode modified by a conjugated polymer interlayer...
This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions f...