Cu2SrSnS4 (CSTS) is a promising alternative candidate to Cu2ZnSnS4 (CZTS) for single- or multi-junction photovoltaics (PVs) owing to its efficient light-absorbing capability, earth-abundant, nontoxic constituents, and suitable defect properties. However, as a novel absorber material, several fundamental properties need to be characterized before further progress can be made in CSTS photovoltaics. In this letter, hybrid density functional theory (DFT) calculations have been used to comprehensively characterize for the first time, the electronic structure, band alignment, and optical properties of CSTS. It is demonstrated that CSTS possesses the ideal electronic structure (direct band gap of 1.98 eV and small photocarrier effective masses) an...
The earth-abundant semiconductor Cu₃BiS₃ (CBS) exhibits promising photovoltaic properties and is oft...
In the last years the demand for electrical energy has been increasing continuously due to an expand...
In this work, first-principles calculations of Cu2ZnSnS4, Cu2ZnGeS4 and Cu2ZnSiS4 are per- formed to...
Cu2BaSnS4 (CBTS) and Cu2SrSnS4 (CSTS) semiconductors have been recently proposed as potential wide b...
Cu2ZnGeSe4 (CZGSe) is a promising earth-abundant and non-toxic semiconductor material for large-scal...
To improve the constraints of kesterite Cu2ZnSnS4 (CZTS) solar cell, such as undesirable band alignm...
To improve the constraints of kesterite Cu2ZnSnS4 (CZTS) solar cell, such as undesirable band alignm...
To improve the constraints of kesterite Cu2ZnSnS4 (CZTS) solar cell, such as undesirable band alignm...
The optoelectronic properties of Cu2ZnSnS4 and environmental considerations have attracted significa...
The world needs solar electricity to replace a large fraction of traditional, fossil-fuel-generated ...
Cu2ZnSnS4 is a promising, versatile and inexpensive quaternary semiconductor with suitable optoelect...
Cu2ZnSnS4 is a promising, versatile and inexpensive quaternary semiconductor with suitable optoelect...
Cu2ZnSnS4 is a promising, versatile and inexpensive quaternary semiconductor with suitable optoelect...
The earth abundant and non-toxic solar absorber material kesterite Cu2ZnSn(S/Se)(4) has been studied...
This thesis presents elemental substitution investigations of Cu2ZnSnS4 to better comprehend the cry...
The earth-abundant semiconductor Cu₃BiS₃ (CBS) exhibits promising photovoltaic properties and is oft...
In the last years the demand for electrical energy has been increasing continuously due to an expand...
In this work, first-principles calculations of Cu2ZnSnS4, Cu2ZnGeS4 and Cu2ZnSiS4 are per- formed to...
Cu2BaSnS4 (CBTS) and Cu2SrSnS4 (CSTS) semiconductors have been recently proposed as potential wide b...
Cu2ZnGeSe4 (CZGSe) is a promising earth-abundant and non-toxic semiconductor material for large-scal...
To improve the constraints of kesterite Cu2ZnSnS4 (CZTS) solar cell, such as undesirable band alignm...
To improve the constraints of kesterite Cu2ZnSnS4 (CZTS) solar cell, such as undesirable band alignm...
To improve the constraints of kesterite Cu2ZnSnS4 (CZTS) solar cell, such as undesirable band alignm...
The optoelectronic properties of Cu2ZnSnS4 and environmental considerations have attracted significa...
The world needs solar electricity to replace a large fraction of traditional, fossil-fuel-generated ...
Cu2ZnSnS4 is a promising, versatile and inexpensive quaternary semiconductor with suitable optoelect...
Cu2ZnSnS4 is a promising, versatile and inexpensive quaternary semiconductor with suitable optoelect...
Cu2ZnSnS4 is a promising, versatile and inexpensive quaternary semiconductor with suitable optoelect...
The earth abundant and non-toxic solar absorber material kesterite Cu2ZnSn(S/Se)(4) has been studied...
This thesis presents elemental substitution investigations of Cu2ZnSnS4 to better comprehend the cry...
The earth-abundant semiconductor Cu₃BiS₃ (CBS) exhibits promising photovoltaic properties and is oft...
In the last years the demand for electrical energy has been increasing continuously due to an expand...
In this work, first-principles calculations of Cu2ZnSnS4, Cu2ZnGeS4 and Cu2ZnSiS4 are per- formed to...