Palladium membranes have been used for decades for the separation of hydrogen from other gasses. In this letter the use of thin palladium leaves to act as sources of atomic hydrogen for silicon samples is explored. It has been assumed in the past that although hydrogen diffuses through palladium in atomic form, the atoms recombine to form molecular hydrogen at the surface. In this letter it is shown that hydrogen supplied to one surface of a palladium leaf can result in atomic hydrogen being released from the opposite surface at low pressure. This is demonstrated through the use of a palladium leaf in a direct plasma system which allows for atomic hydrogen to be supplied to a sample while avoiding exposure to UV radiation from the plasma an...
In this study, the potential of a novel hot-wire technique for silicon thin film deposition and etch...
International audienceIn order to improve the reliability of a Pd-MOS hydrogen sensor, we have studi...
The reaction of gas-phase atomic hydrogen with hydrogen atoms chemisorbed on a silicon surface is st...
Palladium membranes have been used for decades for the separation of hydrogen from other gasses. In ...
This paper reports a new approach for exposing materials, including solar cell structures, to atomic...
Improving the efficiency of solar cells will play a key role in ensuring that solar generated power ...
Shielded hydrogen passivation (SHP) is a recently developed technique for introducing atomic hydroge...
Shielded Hydrogen Passivation (SHP) has been shown to be an effective technique to introduce atomic ...
The result of this study shows that hydrogen atoms passivate copper-related defects (E//T//1 equals ...
Due to emitter damage at the surface, hydrogen passivation of polycrystalline silicon solar cells by...
We have previously demonstrated that hydrogen atoms on the hydrogen-terminated Si(100)-2xl:H surface...
The expanding thermal plasma, which is a promising technique for microcrystalline silicon (μc-Si:H) ...
International audienceWe have exposed a freshly deposited boron-doped hydrogenated amorphous silicon...
We have studied the interactions of atomic deuterium with hydrogenated amorphous silicon (a-Si:H) su...
Palladium (Pd)-based membranes have been studied for many years, regarding applications in productio...
In this study, the potential of a novel hot-wire technique for silicon thin film deposition and etch...
International audienceIn order to improve the reliability of a Pd-MOS hydrogen sensor, we have studi...
The reaction of gas-phase atomic hydrogen with hydrogen atoms chemisorbed on a silicon surface is st...
Palladium membranes have been used for decades for the separation of hydrogen from other gasses. In ...
This paper reports a new approach for exposing materials, including solar cell structures, to atomic...
Improving the efficiency of solar cells will play a key role in ensuring that solar generated power ...
Shielded hydrogen passivation (SHP) is a recently developed technique for introducing atomic hydroge...
Shielded Hydrogen Passivation (SHP) has been shown to be an effective technique to introduce atomic ...
The result of this study shows that hydrogen atoms passivate copper-related defects (E//T//1 equals ...
Due to emitter damage at the surface, hydrogen passivation of polycrystalline silicon solar cells by...
We have previously demonstrated that hydrogen atoms on the hydrogen-terminated Si(100)-2xl:H surface...
The expanding thermal plasma, which is a promising technique for microcrystalline silicon (μc-Si:H) ...
International audienceWe have exposed a freshly deposited boron-doped hydrogenated amorphous silicon...
We have studied the interactions of atomic deuterium with hydrogenated amorphous silicon (a-Si:H) su...
Palladium (Pd)-based membranes have been studied for many years, regarding applications in productio...
In this study, the potential of a novel hot-wire technique for silicon thin film deposition and etch...
International audienceIn order to improve the reliability of a Pd-MOS hydrogen sensor, we have studi...
The reaction of gas-phase atomic hydrogen with hydrogen atoms chemisorbed on a silicon surface is st...