Silicon-based tandem solar cells incorporating low-cost, abundant, and non-toxic metal oxide materials can increase the conversion efficiency of silicon solar cells beyond their conventional limitations with obvious economic and environmental benefits. In this work, the electrical characteristics of a metal oxide thin-film heterojunction solar cell based on a cuprous oxide (Cu2O) absorber layer were investigated. Highly Al-doped n-type ZnO (AZO) and undoped p-type Cu2O thin films were prepared on quartz substrates by magnetron sputter deposition. The electrical and optical properties of these thin films were determined from Hall effect measurements and spectroscopic ellipsometry. After annealing the Cu2O film at 900 °C, the majority ca...
The aim of this research was to fabricate zinc oxide/cuprous(I) oxide-based heterojunction solar cel...
Transparent nanoscale-film heterojunctions based on Cu2O and ZnO were fabricated by atomic layer dep...
Low cost and nontoxic cuprous oxide (Cu2O), with a direct energy gap of 2.1 eV, is a very attractive...
Silicon-based tandem solar cells incorporating low-cost, abundant, and non-toxic metal oxide materia...
This study is aimed at increasing the performance and reliability of silicon-based heterojunction so...
University of Minnesota Ph.D. dissertation. August 2010. Major: Material Science and Engineering. Ad...
The current state of thin film heterojunction solar cells based on cuprous oxide (Cu2O), cupric oxid...
Cupric oxide (CuO) is one of the potential candidates for photovoltaic (PV) industry because of its ...
In an attempt to increase the maximum theoretical efficiency of solar cells, one proposed device is ...
The major market barriers to the use of photovoltaic solar cells are high cost and long payback tim...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2013.Catalo...
We investigate earth abundant materials for thin-film solar cells that can meet tens of terawatts le...
This paper described the fabrication of Zinc Oxide (ZnO)-Cuprous Oxide (Cu2O) heterojunction thin fi...
A ZnO/Cu2O-based combinatorial heterojunction device library was successfully fabricated by a simple...
The modeling, growth, and characterization of Copper Oxide thin films for solar cell applications a...
The aim of this research was to fabricate zinc oxide/cuprous(I) oxide-based heterojunction solar cel...
Transparent nanoscale-film heterojunctions based on Cu2O and ZnO were fabricated by atomic layer dep...
Low cost and nontoxic cuprous oxide (Cu2O), with a direct energy gap of 2.1 eV, is a very attractive...
Silicon-based tandem solar cells incorporating low-cost, abundant, and non-toxic metal oxide materia...
This study is aimed at increasing the performance and reliability of silicon-based heterojunction so...
University of Minnesota Ph.D. dissertation. August 2010. Major: Material Science and Engineering. Ad...
The current state of thin film heterojunction solar cells based on cuprous oxide (Cu2O), cupric oxid...
Cupric oxide (CuO) is one of the potential candidates for photovoltaic (PV) industry because of its ...
In an attempt to increase the maximum theoretical efficiency of solar cells, one proposed device is ...
The major market barriers to the use of photovoltaic solar cells are high cost and long payback tim...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2013.Catalo...
We investigate earth abundant materials for thin-film solar cells that can meet tens of terawatts le...
This paper described the fabrication of Zinc Oxide (ZnO)-Cuprous Oxide (Cu2O) heterojunction thin fi...
A ZnO/Cu2O-based combinatorial heterojunction device library was successfully fabricated by a simple...
The modeling, growth, and characterization of Copper Oxide thin films for solar cell applications a...
The aim of this research was to fabricate zinc oxide/cuprous(I) oxide-based heterojunction solar cel...
Transparent nanoscale-film heterojunctions based on Cu2O and ZnO were fabricated by atomic layer dep...
Low cost and nontoxic cuprous oxide (Cu2O), with a direct energy gap of 2.1 eV, is a very attractive...