Dominantly (211)-oriented In2O3:Sn (ITO) transparent conducting oxide (TCO) films were first fabricated at high sputtering power in the weak reducing ambient with superior electrical and optical properties. The dependence of ITO film orientation on growth condition was systematically investigated, and the formation mechanism was studied by surface energy calculation and band structure simulation. The unique properties of the (211)-oriented films should be ascribed to the richest Interminated surface of the (211) plane, which is tightly correlated with the comparably highest surface energy and highest conduction band surface comparing with the other two typical planes of (222) and (400). The as-prepared (211)-oriented ITO films with the In-r...
The material class of transparent conductive oxides (TCO) has shown to be of crucial importance for ...
Thin films of In203-Sn02 transparent semiconducting oxides (ITO) have been prepared by conventional ...
Indium tin oxide is a wide band gap degenerate semiconductor and is the most widely used material fo...
Transparent conducting oxides (TCOs) combine optical transparency in the visible region with a high ...
Transparent and conducting oxide films find many applications because of their excellent properties ...
The tin-doped indium oxide (ITO) thin films were prepared by reactive thermal evaporation on the gla...
Indium tin oxide (ITO) is one of the widely used transparent conductive oxides (TCO) for application...
Tin-doped indium oxide (commonly named as ITO) is a well-known material vastly used due to its uniqu...
Although multicomponent inorganic thin films (metal-oxides, -carbides, -nitrides, and -chalcogenides...
Although multicomponent inorganic thin films (metal-oxides, -carbides, -nitrides, and -chalcogenides...
In this work, we report that the properties of Sn-doped In 2 O 3 (ITO) can be properly tuned by vary...
Indium tin oxide (ITO) is a semiconducting material combining high conductivity and high transparenc...
In this work, Sn doping In2O3 (ITO) thin films with a thickness of 200 nm were deposited on glass su...
Transparent highly conductive layers of tin doped indium oxide, In 2O3 : Sn, prepared by a simple sp...
The increasing interest in the interaction of light with electricity and electronically active mater...
The material class of transparent conductive oxides (TCO) has shown to be of crucial importance for ...
Thin films of In203-Sn02 transparent semiconducting oxides (ITO) have been prepared by conventional ...
Indium tin oxide is a wide band gap degenerate semiconductor and is the most widely used material fo...
Transparent conducting oxides (TCOs) combine optical transparency in the visible region with a high ...
Transparent and conducting oxide films find many applications because of their excellent properties ...
The tin-doped indium oxide (ITO) thin films were prepared by reactive thermal evaporation on the gla...
Indium tin oxide (ITO) is one of the widely used transparent conductive oxides (TCO) for application...
Tin-doped indium oxide (commonly named as ITO) is a well-known material vastly used due to its uniqu...
Although multicomponent inorganic thin films (metal-oxides, -carbides, -nitrides, and -chalcogenides...
Although multicomponent inorganic thin films (metal-oxides, -carbides, -nitrides, and -chalcogenides...
In this work, we report that the properties of Sn-doped In 2 O 3 (ITO) can be properly tuned by vary...
Indium tin oxide (ITO) is a semiconducting material combining high conductivity and high transparenc...
In this work, Sn doping In2O3 (ITO) thin films with a thickness of 200 nm were deposited on glass su...
Transparent highly conductive layers of tin doped indium oxide, In 2O3 : Sn, prepared by a simple sp...
The increasing interest in the interaction of light with electricity and electronically active mater...
The material class of transparent conductive oxides (TCO) has shown to be of crucial importance for ...
Thin films of In203-Sn02 transparent semiconducting oxides (ITO) have been prepared by conventional ...
Indium tin oxide is a wide band gap degenerate semiconductor and is the most widely used material fo...