The here-presented thesis provides detailed investigations on the structural characteristics of the chalcogenide Cu2ZnSnS4 (CZTS). This semiconductor material is a promising candidate for absorber layers in solar cells due to its desirable properties for thin film photovoltaic applications. Yet, compared to current used chalcopyrite-based devices, efficiencies are significantly lower. This could be attributed to structural effects. Fundamental understanding of the structural characteristics of potential thin film absorber compounds is crucial for proper materials design in the field of solar technology. Therefore, intensive research is necessary to obtain knowledge on so far unexplored structural features or to certify and extend current li...
In the last years the demand for electrical energy has been increasing continuously due to an expand...
ABSTRACT: The copper zinc tin sulfide (CZTS) compound is a promising candidate as an alternative abs...
Die als Absorbermaterial für Dünnschichtsolarzellen geeigneten Verbindungshalbleiter Cu2ZnSnS4 (CZTS...
Quaternary Cu2ZnSnSe4 is a promising low cost alternative absorber material for thin film solar cell...
With respect to absorber materials in solar cells, Cu2ZnSnS4 CZTS has been a focus of interest in ...
Kesterite-type Cu2ZnSnS4 was synthesized from the corresponding binary sulfides by a mechanochemical...
The substitution of Ge4 for Sn4 in Cu2ZnSn S,Se 4 CZTSSe kesterite type absorber layers for thin...
Cu2ZnSnS4 (Kesterit) ist ein viel versprechendes Dünnschicht-Absorbermaterial für die Photovoltaik. ...
The finite resources of fossil fuels, the security risk of atomic power plants and the absence of a...
Quaternary Cu2ZnSnSe4 is a promising low cost alternative absorber material for thin film solar cell...
In the photovoltaic field, Cu2ZnSnS4 (CZTS) compound is an alternative solution to substitute solar ...
Dans le domaine des cellules solaires de type couches minces, les composés dérivés de Cu2ZnSnS4 (CZT...
Climate change is advancing inexorably and is en route to cause uncontrollable global warming that w...
Polycrystalline powder samples of eight very far off stoichiometric Cu2ZnSnSe4 CZTSe compounds o...
To find an approach to prepare a homogenous kesterite-based Cu2ZnSnSe4 thin film, it is necessary to...
In the last years the demand for electrical energy has been increasing continuously due to an expand...
ABSTRACT: The copper zinc tin sulfide (CZTS) compound is a promising candidate as an alternative abs...
Die als Absorbermaterial für Dünnschichtsolarzellen geeigneten Verbindungshalbleiter Cu2ZnSnS4 (CZTS...
Quaternary Cu2ZnSnSe4 is a promising low cost alternative absorber material for thin film solar cell...
With respect to absorber materials in solar cells, Cu2ZnSnS4 CZTS has been a focus of interest in ...
Kesterite-type Cu2ZnSnS4 was synthesized from the corresponding binary sulfides by a mechanochemical...
The substitution of Ge4 for Sn4 in Cu2ZnSn S,Se 4 CZTSSe kesterite type absorber layers for thin...
Cu2ZnSnS4 (Kesterit) ist ein viel versprechendes Dünnschicht-Absorbermaterial für die Photovoltaik. ...
The finite resources of fossil fuels, the security risk of atomic power plants and the absence of a...
Quaternary Cu2ZnSnSe4 is a promising low cost alternative absorber material for thin film solar cell...
In the photovoltaic field, Cu2ZnSnS4 (CZTS) compound is an alternative solution to substitute solar ...
Dans le domaine des cellules solaires de type couches minces, les composés dérivés de Cu2ZnSnS4 (CZT...
Climate change is advancing inexorably and is en route to cause uncontrollable global warming that w...
Polycrystalline powder samples of eight very far off stoichiometric Cu2ZnSnSe4 CZTSe compounds o...
To find an approach to prepare a homogenous kesterite-based Cu2ZnSnSe4 thin film, it is necessary to...
In the last years the demand for electrical energy has been increasing continuously due to an expand...
ABSTRACT: The copper zinc tin sulfide (CZTS) compound is a promising candidate as an alternative abs...
Die als Absorbermaterial für Dünnschichtsolarzellen geeigneten Verbindungshalbleiter Cu2ZnSnS4 (CZTS...