The interaction between (001) n-Si and NiOx was investigated with regard to the oxygen evolution reaction (OER), applicable either for water splitting or CO2 reduction. Thin layers of nickel oxide were deposited step by step by reactive sputter deposition and analyzed in-situ after each step using X-ray photoelectron spectroscopy (XPS). This was performed for silicon with different surface preparations: H-termination, thermally grown oxide (2 Å) and a monolayer of native oxide (4 Å). Upon contact formation the initial flatband like situation in the Si substrates changed to a 0.35 to 0.4 eV upward band bending for all three heterojunctions, with an alignment of the valence bands favorable to hole extraction. With near identical heterojunctio...
We report here the plasma-enhanced chemical vapor deposition and electrocatalytic characterization o...
We report here the plasma-enhanced chemical vapor deposition and electrocatalytic characterization o...
Silicon photoanodes have been studied intensively for efficient photoelectrochemical (PEC)-mediated ...
The interaction between (001) n-Si and NiOx was investigated with regard to the oxygen evolution rea...
Different magnetron sputtering‐based deposition methods of Nickel Oxide SiO2 passivated Si surfaces ...
The thesis entitled "Electronic and electrocatalytic properties of nickel oxide thin films and inter...
Different magnetron sputtering‐based deposition methods of nickel oxide SiO₂‐passivated Si surfaces ...
Different magnetron sputtering-based deposition methods of nickel oxide SiO2-passivated Si surfaces ...
Different magnetron sputtering‐based deposition methods of nickel oxide SiO₂‐passivated Si surfaces ...
Nickel oxide is a promising electro-catalytic material for the oxygen evolution reaction (OER), for ...
We employ a thin Al2O3 interlayer between p-NiOX catalyst/n-Si photoanode interfaces to realize an e...
The effect of oxygen impurities on the Ni/Ni2Si interface has been investigated via ion implantation...
Thin NiOx layers were prepared by oxidation at 400, 500 and 600 °C of metallic Ni deposited by elect...
Silicon photoanodes patterned with thin-film Ni catalyst islands exhibited stable oxygen evolution f...
Silicon photoanodes have been studied intensively for efficient photoelectrochemical (PEC)-mediated ...
We report here the plasma-enhanced chemical vapor deposition and electrocatalytic characterization o...
We report here the plasma-enhanced chemical vapor deposition and electrocatalytic characterization o...
Silicon photoanodes have been studied intensively for efficient photoelectrochemical (PEC)-mediated ...
The interaction between (001) n-Si and NiOx was investigated with regard to the oxygen evolution rea...
Different magnetron sputtering‐based deposition methods of Nickel Oxide SiO2 passivated Si surfaces ...
The thesis entitled "Electronic and electrocatalytic properties of nickel oxide thin films and inter...
Different magnetron sputtering‐based deposition methods of nickel oxide SiO₂‐passivated Si surfaces ...
Different magnetron sputtering-based deposition methods of nickel oxide SiO2-passivated Si surfaces ...
Different magnetron sputtering‐based deposition methods of nickel oxide SiO₂‐passivated Si surfaces ...
Nickel oxide is a promising electro-catalytic material for the oxygen evolution reaction (OER), for ...
We employ a thin Al2O3 interlayer between p-NiOX catalyst/n-Si photoanode interfaces to realize an e...
The effect of oxygen impurities on the Ni/Ni2Si interface has been investigated via ion implantation...
Thin NiOx layers were prepared by oxidation at 400, 500 and 600 °C of metallic Ni deposited by elect...
Silicon photoanodes patterned with thin-film Ni catalyst islands exhibited stable oxygen evolution f...
Silicon photoanodes have been studied intensively for efficient photoelectrochemical (PEC)-mediated ...
We report here the plasma-enhanced chemical vapor deposition and electrocatalytic characterization o...
We report here the plasma-enhanced chemical vapor deposition and electrocatalytic characterization o...
Silicon photoanodes have been studied intensively for efficient photoelectrochemical (PEC)-mediated ...