International audienceCu/Zn disorder in the kesterite Cu2ZnSnS4 derivatives used for thin film based solar cells is an important issue for photovoltaic performances. Unfortunately, Cu and Zn cannot be distinguished by conventional laboratory X-ray diffraction. This paper reports on a resonant diffraction investigation of a Cu2ZnSnS4 single crystal from a quenched powdered sample. The full disorder of Cu and Zn in the z = 1/4 atomic plane is shown. The structure, namely disordered kesterite, is then described in the I\bar 42m space group
Quaternary Cu2ZnSnSe4 is a promising low cost alternative absorber material for thin film solar cell...
Kesterite type based thin film solar cell technologies are mainly based on polycrystalline absorber ...
Kesterite-type based thin film solar cell technologies are mainly based on polycrystalline absorber ...
The atomic structure of the potential photovoltaic materials Cu2ZnSnS4 CZTS and Cu2ZnSnSe4 CZTSe ...
The kesterite structured semiconductor Cu2ZnSnS4is one of the most promising compound for earth abun...
Cu2ZnSnS4 (CZTS) is a technologically important and complex quaternary semiconductor and a highly pr...
The quaternary compound semiconductor Cu2ZnSn(S1-xSex)4 (CZTSSe) which crystallizes in the kesterite...
The crystal structure identification of the photovoltaic material Cu2ZnSnSe4 CZTSe is challenging ...
Quaternary Cu2ZnSn S1 xSex 4 compounds are promising semiconductor materials for absorber layer in ...
The solid solution series between Cu2ZnSnSe4, crystallizing in the kesterite type structure, and Cu2...
Dans le domaine des cellules solaires de type couches minces, les composés dérivés de Cu2ZnSnS4 (CZT...
Kesterite materials Cu2ZnSn S,Se 4 are made from non toxic, earth abundant and low cost raw materi...
Kesterite type compound semiconductors, containing copper and zinc, have photovoltaic properties dep...
Cu2ZnSnS4 has great potential to be applied as an earth abundant and non-toxic absorber material in ...
Multiple Edge Anomalous Diffraction MEAD has been applied to various quaternary sulfosalts belongi...
Quaternary Cu2ZnSnSe4 is a promising low cost alternative absorber material for thin film solar cell...
Kesterite type based thin film solar cell technologies are mainly based on polycrystalline absorber ...
Kesterite-type based thin film solar cell technologies are mainly based on polycrystalline absorber ...
The atomic structure of the potential photovoltaic materials Cu2ZnSnS4 CZTS and Cu2ZnSnSe4 CZTSe ...
The kesterite structured semiconductor Cu2ZnSnS4is one of the most promising compound for earth abun...
Cu2ZnSnS4 (CZTS) is a technologically important and complex quaternary semiconductor and a highly pr...
The quaternary compound semiconductor Cu2ZnSn(S1-xSex)4 (CZTSSe) which crystallizes in the kesterite...
The crystal structure identification of the photovoltaic material Cu2ZnSnSe4 CZTSe is challenging ...
Quaternary Cu2ZnSn S1 xSex 4 compounds are promising semiconductor materials for absorber layer in ...
The solid solution series between Cu2ZnSnSe4, crystallizing in the kesterite type structure, and Cu2...
Dans le domaine des cellules solaires de type couches minces, les composés dérivés de Cu2ZnSnS4 (CZT...
Kesterite materials Cu2ZnSn S,Se 4 are made from non toxic, earth abundant and low cost raw materi...
Kesterite type compound semiconductors, containing copper and zinc, have photovoltaic properties dep...
Cu2ZnSnS4 has great potential to be applied as an earth abundant and non-toxic absorber material in ...
Multiple Edge Anomalous Diffraction MEAD has been applied to various quaternary sulfosalts belongi...
Quaternary Cu2ZnSnSe4 is a promising low cost alternative absorber material for thin film solar cell...
Kesterite type based thin film solar cell technologies are mainly based on polycrystalline absorber ...
Kesterite-type based thin film solar cell technologies are mainly based on polycrystalline absorber ...