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V Pirronello - One of the best experts on this subject based on the ideXlab platform.

  • formation of Nitrogen Oxides via no o2 gas solid reaction on cold surfaces
    Chemical Physics Letters, 2013
    Co-Authors: Marco Minissale, S. Baouche, E Congiu, Audrey Moudens, G Manico, François Dulieu, Habiba Chaabouni, V Pirronello
    Abstract:

    Abstract The oxidation of Nitrogen monoxide has implications for the complex atmospheric chemistry of Antarctica, as well as for planetary atmospheres. In this study we unveil that O 2 adsorbed on a cold surface reacts with a very high efficiency with NO coming from the gas phase to form NO 2 . Via two molecular beams, O 2 and NO molecules are aimed at a cold (10 K) sample held in a UHV chamber. NO 2 is formed independently of the surface composition and morphology. We show that the NO + O 2 reaction occurs mainly through the direct Eley Rideal mechanism to form Nitrogen Oxides (NO 2 , N 2 O 3 , N 2 O 4 ).

  • Formation of Nitrogen Oxides via NO + O2 gas–solid reaction on cold surfaces
    Chemical Physics Letters, 2013
    Co-Authors: Marco Minissale, S. Baouche, E Congiu, Audrey Moudens, G Manico, François Dulieu, Habiba Chaabouni, V Pirronello
    Abstract:

    Abstract The oxidation of Nitrogen monoxide has implications for the complex atmospheric chemistry of Antarctica, as well as for planetary atmospheres. In this study we unveil that O 2 adsorbed on a cold surface reacts with a very high efficiency with NO coming from the gas phase to form NO 2 . Via two molecular beams, O 2 and NO molecules are aimed at a cold (10 K) sample held in a UHV chamber. NO 2 is formed independently of the surface composition and morphology. We show that the NO + O 2 reaction occurs mainly through the direct Eley Rideal mechanism to form Nitrogen Oxides (NO 2 , N 2 O 3 , N 2 O 4 ).

Marco Minissale - One of the best experts on this subject based on the ideXlab platform.

  • formation of Nitrogen Oxides via no o2 gas solid reaction on cold surfaces
    Chemical Physics Letters, 2013
    Co-Authors: Marco Minissale, S. Baouche, E Congiu, Audrey Moudens, G Manico, François Dulieu, Habiba Chaabouni, V Pirronello
    Abstract:

    Abstract The oxidation of Nitrogen monoxide has implications for the complex atmospheric chemistry of Antarctica, as well as for planetary atmospheres. In this study we unveil that O 2 adsorbed on a cold surface reacts with a very high efficiency with NO coming from the gas phase to form NO 2 . Via two molecular beams, O 2 and NO molecules are aimed at a cold (10 K) sample held in a UHV chamber. NO 2 is formed independently of the surface composition and morphology. We show that the NO + O 2 reaction occurs mainly through the direct Eley Rideal mechanism to form Nitrogen Oxides (NO 2 , N 2 O 3 , N 2 O 4 ).

  • Formation of Nitrogen Oxides via NO + O2 gas–solid reaction on cold surfaces
    Chemical Physics Letters, 2013
    Co-Authors: Marco Minissale, S. Baouche, E Congiu, Audrey Moudens, G Manico, François Dulieu, Habiba Chaabouni, V Pirronello
    Abstract:

    Abstract The oxidation of Nitrogen monoxide has implications for the complex atmospheric chemistry of Antarctica, as well as for planetary atmospheres. In this study we unveil that O 2 adsorbed on a cold surface reacts with a very high efficiency with NO coming from the gas phase to form NO 2 . Via two molecular beams, O 2 and NO molecules are aimed at a cold (10 K) sample held in a UHV chamber. NO 2 is formed independently of the surface composition and morphology. We show that the NO + O 2 reaction occurs mainly through the direct Eley Rideal mechanism to form Nitrogen Oxides (NO 2 , N 2 O 3 , N 2 O 4 ).

Habiba Chaabouni - One of the best experts on this subject based on the ideXlab platform.

  • formation of Nitrogen Oxides via no o2 gas solid reaction on cold surfaces
    Chemical Physics Letters, 2013
    Co-Authors: Marco Minissale, S. Baouche, E Congiu, Audrey Moudens, G Manico, François Dulieu, Habiba Chaabouni, V Pirronello
    Abstract:

    Abstract The oxidation of Nitrogen monoxide has implications for the complex atmospheric chemistry of Antarctica, as well as for planetary atmospheres. In this study we unveil that O 2 adsorbed on a cold surface reacts with a very high efficiency with NO coming from the gas phase to form NO 2 . Via two molecular beams, O 2 and NO molecules are aimed at a cold (10 K) sample held in a UHV chamber. NO 2 is formed independently of the surface composition and morphology. We show that the NO + O 2 reaction occurs mainly through the direct Eley Rideal mechanism to form Nitrogen Oxides (NO 2 , N 2 O 3 , N 2 O 4 ).

  • Formation of Nitrogen Oxides via NO + O2 gas–solid reaction on cold surfaces
    Chemical Physics Letters, 2013
    Co-Authors: Marco Minissale, S. Baouche, E Congiu, Audrey Moudens, G Manico, François Dulieu, Habiba Chaabouni, V Pirronello
    Abstract:

    Abstract The oxidation of Nitrogen monoxide has implications for the complex atmospheric chemistry of Antarctica, as well as for planetary atmospheres. In this study we unveil that O 2 adsorbed on a cold surface reacts with a very high efficiency with NO coming from the gas phase to form NO 2 . Via two molecular beams, O 2 and NO molecules are aimed at a cold (10 K) sample held in a UHV chamber. NO 2 is formed independently of the surface composition and morphology. We show that the NO + O 2 reaction occurs mainly through the direct Eley Rideal mechanism to form Nitrogen Oxides (NO 2 , N 2 O 3 , N 2 O 4 ).

S. Baouche - One of the best experts on this subject based on the ideXlab platform.

  • formation of Nitrogen Oxides via no o2 gas solid reaction on cold surfaces
    Chemical Physics Letters, 2013
    Co-Authors: Marco Minissale, S. Baouche, E Congiu, Audrey Moudens, G Manico, François Dulieu, Habiba Chaabouni, V Pirronello
    Abstract:

    Abstract The oxidation of Nitrogen monoxide has implications for the complex atmospheric chemistry of Antarctica, as well as for planetary atmospheres. In this study we unveil that O 2 adsorbed on a cold surface reacts with a very high efficiency with NO coming from the gas phase to form NO 2 . Via two molecular beams, O 2 and NO molecules are aimed at a cold (10 K) sample held in a UHV chamber. NO 2 is formed independently of the surface composition and morphology. We show that the NO + O 2 reaction occurs mainly through the direct Eley Rideal mechanism to form Nitrogen Oxides (NO 2 , N 2 O 3 , N 2 O 4 ).

  • Formation of Nitrogen Oxides via NO + O2 gas–solid reaction on cold surfaces
    Chemical Physics Letters, 2013
    Co-Authors: Marco Minissale, S. Baouche, E Congiu, Audrey Moudens, G Manico, François Dulieu, Habiba Chaabouni, V Pirronello
    Abstract:

    Abstract The oxidation of Nitrogen monoxide has implications for the complex atmospheric chemistry of Antarctica, as well as for planetary atmospheres. In this study we unveil that O 2 adsorbed on a cold surface reacts with a very high efficiency with NO coming from the gas phase to form NO 2 . Via two molecular beams, O 2 and NO molecules are aimed at a cold (10 K) sample held in a UHV chamber. NO 2 is formed independently of the surface composition and morphology. We show that the NO + O 2 reaction occurs mainly through the direct Eley Rideal mechanism to form Nitrogen Oxides (NO 2 , N 2 O 3 , N 2 O 4 ).

E Congiu - One of the best experts on this subject based on the ideXlab platform.

  • formation of Nitrogen Oxides via no o2 gas solid reaction on cold surfaces
    Chemical Physics Letters, 2013
    Co-Authors: Marco Minissale, S. Baouche, E Congiu, Audrey Moudens, G Manico, François Dulieu, Habiba Chaabouni, V Pirronello
    Abstract:

    Abstract The oxidation of Nitrogen monoxide has implications for the complex atmospheric chemistry of Antarctica, as well as for planetary atmospheres. In this study we unveil that O 2 adsorbed on a cold surface reacts with a very high efficiency with NO coming from the gas phase to form NO 2 . Via two molecular beams, O 2 and NO molecules are aimed at a cold (10 K) sample held in a UHV chamber. NO 2 is formed independently of the surface composition and morphology. We show that the NO + O 2 reaction occurs mainly through the direct Eley Rideal mechanism to form Nitrogen Oxides (NO 2 , N 2 O 3 , N 2 O 4 ).

  • Formation of Nitrogen Oxides via NO + O2 gas–solid reaction on cold surfaces
    Chemical Physics Letters, 2013
    Co-Authors: Marco Minissale, S. Baouche, E Congiu, Audrey Moudens, G Manico, François Dulieu, Habiba Chaabouni, V Pirronello
    Abstract:

    Abstract The oxidation of Nitrogen monoxide has implications for the complex atmospheric chemistry of Antarctica, as well as for planetary atmospheres. In this study we unveil that O 2 adsorbed on a cold surface reacts with a very high efficiency with NO coming from the gas phase to form NO 2 . Via two molecular beams, O 2 and NO molecules are aimed at a cold (10 K) sample held in a UHV chamber. NO 2 is formed independently of the surface composition and morphology. We show that the NO + O 2 reaction occurs mainly through the direct Eley Rideal mechanism to form Nitrogen Oxides (NO 2 , N 2 O 3 , N 2 O 4 ).