Herein, we report an atomic layer deposition (ALD) process for Cu2O thin films using copper(II) acetate [Cu(OAc)(2)] and water vapor as precursors. This precursor combination enables the deposition of phase-pure, polycrystalline, and impurity-free Cu2O thin films at temperatures of 180-220 degrees C. The deposition of Cu(I) oxide films from a Cu(II) precursor without the use of a reducing agent is explained by the thermally induced reduction of Cu(OAc)(2) to the volatile copper(I) acetate, CuOAc. In addition to the optimization of ALD process parameters and characterization of film properties, we studied the Cu2O films in the fabrication of photoconductor devices. Our proof-of-concept devices show that approx- imately 20 nm thick Cu2O films...
International audienceAbstract Cu 2 O is a promising p-type semiconductor for low-cost photovoltaics...
Thin films of copper oxide were grown by radio frequency-magnetron sputtering in an oxygen-argon env...
Copper (I) oxide (Cu20) has enormous potential for photovoltaic applications. Cu20 is a p-type semic...
Herein, we report an atomic layer deposition (ALD) process for Cu2O thin films using copper(II) acet...
Herein, we report an atomic layer deposition (ALD) process for Cu2O thin films using copper(II) acet...
This poster was presented in the Materials for Advanced Metallization (MAM) 2014 Conference in Chemn...
This poster was presented in the Materials for Advanced Metallization (MAM) 2014 Conference in Chemn...
High-quality, single-crystal-like Cu2O thin films of various thicknesses (10 nm-45 nm) were prepared...
The growth of ultrathin (<5 nm) Ru-doped Cu 2O films deposited on SiO2 by atomic layer deposition (A...
International audienceAbstract Cu 2 O is a promising p-type semiconductor for low-cost photovoltaics...
International audienceAbstract Cu 2 O is a promising p-type semiconductor for low-cost photovoltaics...
International audienceAbstract Cu 2 O is a promising p-type semiconductor for low-cost photovoltaics...
International audienceAbstract Cu 2 O is a promising p-type semiconductor for low-cost photovoltaics...
International audienceAbstract Cu 2 O is a promising p-type semiconductor for low-cost photovoltaics...
International audienceAbstract Cu 2 O is a promising p-type semiconductor for low-cost photovoltaics...
International audienceAbstract Cu 2 O is a promising p-type semiconductor for low-cost photovoltaics...
Thin films of copper oxide were grown by radio frequency-magnetron sputtering in an oxygen-argon env...
Copper (I) oxide (Cu20) has enormous potential for photovoltaic applications. Cu20 is a p-type semic...
Herein, we report an atomic layer deposition (ALD) process for Cu2O thin films using copper(II) acet...
Herein, we report an atomic layer deposition (ALD) process for Cu2O thin films using copper(II) acet...
This poster was presented in the Materials for Advanced Metallization (MAM) 2014 Conference in Chemn...
This poster was presented in the Materials for Advanced Metallization (MAM) 2014 Conference in Chemn...
High-quality, single-crystal-like Cu2O thin films of various thicknesses (10 nm-45 nm) were prepared...
The growth of ultrathin (<5 nm) Ru-doped Cu 2O films deposited on SiO2 by atomic layer deposition (A...
International audienceAbstract Cu 2 O is a promising p-type semiconductor for low-cost photovoltaics...
International audienceAbstract Cu 2 O is a promising p-type semiconductor for low-cost photovoltaics...
International audienceAbstract Cu 2 O is a promising p-type semiconductor for low-cost photovoltaics...
International audienceAbstract Cu 2 O is a promising p-type semiconductor for low-cost photovoltaics...
International audienceAbstract Cu 2 O is a promising p-type semiconductor for low-cost photovoltaics...
International audienceAbstract Cu 2 O is a promising p-type semiconductor for low-cost photovoltaics...
International audienceAbstract Cu 2 O is a promising p-type semiconductor for low-cost photovoltaics...
Thin films of copper oxide were grown by radio frequency-magnetron sputtering in an oxygen-argon env...
Copper (I) oxide (Cu20) has enormous potential for photovoltaic applications. Cu20 is a p-type semic...