[EN] Binary compound tin disulfide (SnS2) and cadmium sulfide (CdS) are the potential candidates used as a buffer layer for copper indium gallium selenide (CIGS) and copper zinc tin sulfide (CZTS) thin-film device. Herein, both compounds have been successfully prepared through simple hydrothermal (HD) and chemical bath deposition (CBD) techniques, respectively. The prepared samples were characterized by different available techniques like X-ray diffraction (XRD), atomic force microscopy (AFM), surface electron microscopy (SEM), energy dispersive spectroscopy (EDS), transmittance electrons microscopy (TEM), UV¿Visible spectroscopy and photoelectrochemical (PEC) analysis. The XRD analysis confirms the polycrystalline nature of the prepared th...
We have been working on the development of thin film photovoltaic solar cell materials that can be p...
The buffer layer is a crucial component in thin film solar cells. Defects at the interface between a...
Tin sulphide is a promising absorber material for low-cost and earth abundant thin film solar cell...
Le présent travail porte sur l'élaboration de couches minces du matériau binaire SnS avec des propri...
The paper examines the properties of CdS thin film, which is used for window material of solar cells...
Using SCAPS-1D software, a highly efficient SnS thin film solar cell has been explored and simulated...
Copper zinc tin sulfide (kesterite, Cu2ZnSnS4, CZTS) is a promising earth-abundant and non-toxic mat...
The rapid research progress in tin-based binary sulfides (SnxSy = o-SnS, c-SnS, SnS2, and Sn2S3) by ...
Cadmium sulfide thin films have been grown using a modified chemical bath deposition method with fou...
This paper reports a study of direct heated substrate chemical bath deposited Cadmium Sulphide buffe...
Tin(II) sulfide (SnS) is an earth-abundant, inexpensive, and non-toxic absorber material for thin fi...
The Cu 2 S and SnS 2 layers have been prepared by the chemical bath deposition method. The results o...
A variety of competing semiconductor materials are used to create p-n solar cells. Currently silicon...
The increasing human population has caused the demand for energy in society to escalate . The least ...
In this study, ZnS thin films were successfully synthesized by chemical bath deposition (CBD) with s...
We have been working on the development of thin film photovoltaic solar cell materials that can be p...
The buffer layer is a crucial component in thin film solar cells. Defects at the interface between a...
Tin sulphide is a promising absorber material for low-cost and earth abundant thin film solar cell...
Le présent travail porte sur l'élaboration de couches minces du matériau binaire SnS avec des propri...
The paper examines the properties of CdS thin film, which is used for window material of solar cells...
Using SCAPS-1D software, a highly efficient SnS thin film solar cell has been explored and simulated...
Copper zinc tin sulfide (kesterite, Cu2ZnSnS4, CZTS) is a promising earth-abundant and non-toxic mat...
The rapid research progress in tin-based binary sulfides (SnxSy = o-SnS, c-SnS, SnS2, and Sn2S3) by ...
Cadmium sulfide thin films have been grown using a modified chemical bath deposition method with fou...
This paper reports a study of direct heated substrate chemical bath deposited Cadmium Sulphide buffe...
Tin(II) sulfide (SnS) is an earth-abundant, inexpensive, and non-toxic absorber material for thin fi...
The Cu 2 S and SnS 2 layers have been prepared by the chemical bath deposition method. The results o...
A variety of competing semiconductor materials are used to create p-n solar cells. Currently silicon...
The increasing human population has caused the demand for energy in society to escalate . The least ...
In this study, ZnS thin films were successfully synthesized by chemical bath deposition (CBD) with s...
We have been working on the development of thin film photovoltaic solar cell materials that can be p...
The buffer layer is a crucial component in thin film solar cells. Defects at the interface between a...
Tin sulphide is a promising absorber material for low-cost and earth abundant thin film solar cell...