Binary II-V semiconductors are highly optically active materials, possess high intrinsic mechanical and chemical durability, and have electronic properties ideal for optoelectronic applications. Among them, zinc diphosphide (ZnP2) is a promising earth-abundant absorber material for solar energy conversion. We have investigated the structural, mechanical, and optoelectronic properties of both the tetragonal (α) and monoclinic (β) phases of ZnP2 using standard, Hubbard-corrected and screened hybrid density functional theory methods. Through the analysis of bond character, band gap nature, and absorption spectra, we show that there exist two polymorphs of the β phase (denoted as β1 and β2) with distinct differences in the photovoltaic potentia...
Zinc phosphides (ZnP2 and Zn3P2) are emerging absorber materials for photovoltaic applications owing...
Zinc phosphides (ZnP2 and Zn3P2) are emerging absorber materials for photovoltaic applications owing...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Ca...
Binary II-V semiconductors are highly optically active materials, possess high intrinsic mechanical ...
Binary II-V semiconductors are highly optically active materials, possess high intrinsic mechanical ...
Binary II-V semiconductors are highly optically active materials, possess high intrinsic mechanical ...
Binary II–V semiconductors are highly optically active materials, possess high intrinsic mechanical ...
and chemical durability, and have electronic properties ideal for optoelectronic applications. Among...
and chemical durability, and have electronic properties ideal for optoelectronic applications. Among...
and chemical durability, and have electronic properties ideal for optoelectronic applications. Among...
The resurgence of interest in zinc phosphide compounds as efficient solar absorbers has initiated in...
The resurgence of interest in zinc phosphide compounds as efficient solar absorbers has initiated in...
The resurgence of interest in zinc phosphide compounds as efficient solar absorbers has initiated in...
The resurgence of interest in zinc phosphide compounds as efficient solar absorbers has initiated in...
The relative stability of polymorphs and their electronic structure was investigated for II-IV-V2 ma...
Zinc phosphides (ZnP2 and Zn3P2) are emerging absorber materials for photovoltaic applications owing...
Zinc phosphides (ZnP2 and Zn3P2) are emerging absorber materials for photovoltaic applications owing...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Ca...
Binary II-V semiconductors are highly optically active materials, possess high intrinsic mechanical ...
Binary II-V semiconductors are highly optically active materials, possess high intrinsic mechanical ...
Binary II-V semiconductors are highly optically active materials, possess high intrinsic mechanical ...
Binary II–V semiconductors are highly optically active materials, possess high intrinsic mechanical ...
and chemical durability, and have electronic properties ideal for optoelectronic applications. Among...
and chemical durability, and have electronic properties ideal for optoelectronic applications. Among...
and chemical durability, and have electronic properties ideal for optoelectronic applications. Among...
The resurgence of interest in zinc phosphide compounds as efficient solar absorbers has initiated in...
The resurgence of interest in zinc phosphide compounds as efficient solar absorbers has initiated in...
The resurgence of interest in zinc phosphide compounds as efficient solar absorbers has initiated in...
The resurgence of interest in zinc phosphide compounds as efficient solar absorbers has initiated in...
The relative stability of polymorphs and their electronic structure was investigated for II-IV-V2 ma...
Zinc phosphides (ZnP2 and Zn3P2) are emerging absorber materials for photovoltaic applications owing...
Zinc phosphides (ZnP2 and Zn3P2) are emerging absorber materials for photovoltaic applications owing...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Ca...