While largely studied on the macroscopic scale, the dynamics leading to nucleation and fission processes in atmospheric aerosols are still poorly understood at the molecular level. Here, we present a joint experimental–theoretical study of a model system consisting of hydrogen-bonded ammonia and water molecules. Experimentally, the clusters were produced via adiabatic co-expansion. Double ionization ionic products were prepared using synchrotron radiation and analyzed with coincidence mass- and 3D momentum spectroscopy. Calculations were carried out using ab initio molecular dynamics to understand the fragmentation within the first ∼500 fs. Further exploration of the potential energy surfaces was performed at a DFT level of theory to gain i...
New particle formation (NPF) is known to be an important source of atmospheric particles that impact...
Understanding the microscopic mechanisms of new particle formation under acid-rich conditions is of ...
The charge and proton dynamics in hydrogen-bonded networks are investigated using ammonia as a model...
While largely studied on the macroscopic scale, the dynamics leading to nucleation and fission proce...
While largely studied in the macroscopic scale, the dynamics leading to the nucleation and fission o...
A mixed molecular dynamics/quantum mechanics model has been applied to the ammonium/water clustering...
Aggregates of hydrogen bonded molecules constitute ideal model systems for investigating the energet...
A mixed molecular dynamics/quantum mechanics model has been applied to the ammonium/water clustering...
Hydration directly affects the mobility, thermodynamic properties, lifetime and nucleation rates of ...
Particles consisting of ammonia and sulfuric acid are widely regarded as seeds for atmospheric aeros...
Formation of new particles through clustering of molecules from condensable vapors is a significant ...
Large ammonia clusters represent a model system of ices that are omnipresent throughout the space. T...
A detailed study of the interactions leading to stabilization of the NH3(H2O){n =1,2} clusters is pr...
Solvation effects on twenty-two homogeneous and heterogeneous clusters formed from m nitric acid mol...
Branching ratios of water and ammonia evaporation have been measured for spontaneous evaporation fro...
New particle formation (NPF) is known to be an important source of atmospheric particles that impact...
Understanding the microscopic mechanisms of new particle formation under acid-rich conditions is of ...
The charge and proton dynamics in hydrogen-bonded networks are investigated using ammonia as a model...
While largely studied on the macroscopic scale, the dynamics leading to nucleation and fission proce...
While largely studied in the macroscopic scale, the dynamics leading to the nucleation and fission o...
A mixed molecular dynamics/quantum mechanics model has been applied to the ammonium/water clustering...
Aggregates of hydrogen bonded molecules constitute ideal model systems for investigating the energet...
A mixed molecular dynamics/quantum mechanics model has been applied to the ammonium/water clustering...
Hydration directly affects the mobility, thermodynamic properties, lifetime and nucleation rates of ...
Particles consisting of ammonia and sulfuric acid are widely regarded as seeds for atmospheric aeros...
Formation of new particles through clustering of molecules from condensable vapors is a significant ...
Large ammonia clusters represent a model system of ices that are omnipresent throughout the space. T...
A detailed study of the interactions leading to stabilization of the NH3(H2O){n =1,2} clusters is pr...
Solvation effects on twenty-two homogeneous and heterogeneous clusters formed from m nitric acid mol...
Branching ratios of water and ammonia evaporation have been measured for spontaneous evaporation fro...
New particle formation (NPF) is known to be an important source of atmospheric particles that impact...
Understanding the microscopic mechanisms of new particle formation under acid-rich conditions is of ...
The charge and proton dynamics in hydrogen-bonded networks are investigated using ammonia as a model...