We report on chemical reactions triggered by core-level ionization of ammonium (NH4 + ) cation in aqueous solution. Based on a combination of photoemission experiments from a liquid microjet and high-level ab initio simulations, we identified simultaneous single and double proton transfer occurring on a very short timescale spanned by the Auger-decay lifetime. Molecular dynamics simulations indicate that the proton transfer to a neighboring water molecule leads to essentially complete formation of H3O+ (aq) and core-ionized ammonia (NH4 ) + (a)∗ within the ∼7 fs lifetime of the nitrogen 1s core hole. A second proton transfer leads to a transient structure with the proton shared between the remaining NH2 moiety and another water molecule in ...
The knowledge of primary processes following the interaction of high energy radiation with molecules...
Understanding the hydration and diffusion of ions in water at the molecular level is a topic of wide...
Auger-electron spectroscopy is applied to hydrogen peroxide aqueous solution to identify ultrafast e...
We report on chemical reactions triggered by core-level ionization of ammonium (NH4 + ) cation in aq...
Recently, a new family of autoionization processes has been identified in aqueous phases. The proces...
Recently, a new family of autoionization processes has been identified in aqueous phases. The proces...
To understand the yield and patterns of damage in aqueous condensed matter, including biological sys...
A core-ionized H(2)O molecule in liquid water primarily relaxes through normal Auger decay, leading ...
We report the first nitrogen 1s Auger Meitner electron spectrum from a liquid ammonia microjet at a ...
A core ionized H2O molecule in liquid water primarily relaxes through normal Auger decay, leading to...
Modern ab initio calculations predict ionic and superionic states in highly compressed water and amm...
We report the first nitrogen 1s Auger–Meitner electron spectrum from a liquid ammonia microjet at a ...
The knowledge of primary processes following the interaction of high energy radiation with molecules...
Understanding the hydration and diffusion of ions in water at the molecular level is a topic of wide...
Auger-electron spectroscopy is applied to hydrogen peroxide aqueous solution to identify ultrafast e...
We report on chemical reactions triggered by core-level ionization of ammonium (NH4 + ) cation in aq...
Recently, a new family of autoionization processes has been identified in aqueous phases. The proces...
Recently, a new family of autoionization processes has been identified in aqueous phases. The proces...
To understand the yield and patterns of damage in aqueous condensed matter, including biological sys...
A core-ionized H(2)O molecule in liquid water primarily relaxes through normal Auger decay, leading ...
We report the first nitrogen 1s Auger Meitner electron spectrum from a liquid ammonia microjet at a ...
A core ionized H2O molecule in liquid water primarily relaxes through normal Auger decay, leading to...
Modern ab initio calculations predict ionic and superionic states in highly compressed water and amm...
We report the first nitrogen 1s Auger–Meitner electron spectrum from a liquid ammonia microjet at a ...
The knowledge of primary processes following the interaction of high energy radiation with molecules...
Understanding the hydration and diffusion of ions in water at the molecular level is a topic of wide...
Auger-electron spectroscopy is applied to hydrogen peroxide aqueous solution to identify ultrafast e...