The acid–base chemistry of amines and sulfuric acid promotes growth in the early stages of atmospheric new particle formation, with more basic amines enhancing growth rates. Hydration of these particles has been proposed to depend on acidity or basicity but is difficult to quantify; therefore, the role of water in this process is not well understood. Using tandem mass spectrometry coupled to a temperature-controlled ion trap, we show that water uptake by aminium bisulfate clusters depends on the total number of free hydrogen bond donors in the cluster and is unaffected by the interchange of amines featuring the same number of substituents but differing gas-phase basicity. Analyzing this trend reveals site-specific propensities for hydration...
In the atmosphere, a well-known and conventional pathway toward the formation of ammonium sulfate is...
Protonation, hydration and cluster formation of ammonia, formaldehyde, formic acid, acetone, butanon...
Clusters of water molecules mimic the transition from gas phase to bulk water. Cluster species of th...
Despite the well-established role of small molecular clusters in the very first steps of atmospheric...
New particle formation is a process in which particles form from trace vapors in the atmosphere and ...
In the atmosphere, water in all phases is ubiquitous and plays important roles in catalyzing atmosph...
It is estimated that \~{}50\% of climatically relevant atmospheric aerosols arise from new particle ...
Abstract. Recent ab initio calculations showed that amines can enhance atmospheric sulfuric acid-wat...
New particle formation (NPF) plays a crucial role in the formation of secondary aerosol particles, w...
Although ammonium ion–water clusters are abundant in the biosphere, some information regarding these...
Formation of new particles through clustering of molecules from condensable vapors is a significant ...
Hydration directly affects the mobility, thermodynamic properties, lifetime and nucleation rates of ...
Understanding the microscopic mechanisms of new particle formation under acid-rich conditions is of ...
The formation of particles from precursor vapors is an important source of atmospheric aerosol. Rese...
International audienceWe have studied the structure and formation thermodynamics of dimer clusters c...
In the atmosphere, a well-known and conventional pathway toward the formation of ammonium sulfate is...
Protonation, hydration and cluster formation of ammonia, formaldehyde, formic acid, acetone, butanon...
Clusters of water molecules mimic the transition from gas phase to bulk water. Cluster species of th...
Despite the well-established role of small molecular clusters in the very first steps of atmospheric...
New particle formation is a process in which particles form from trace vapors in the atmosphere and ...
In the atmosphere, water in all phases is ubiquitous and plays important roles in catalyzing atmosph...
It is estimated that \~{}50\% of climatically relevant atmospheric aerosols arise from new particle ...
Abstract. Recent ab initio calculations showed that amines can enhance atmospheric sulfuric acid-wat...
New particle formation (NPF) plays a crucial role in the formation of secondary aerosol particles, w...
Although ammonium ion–water clusters are abundant in the biosphere, some information regarding these...
Formation of new particles through clustering of molecules from condensable vapors is a significant ...
Hydration directly affects the mobility, thermodynamic properties, lifetime and nucleation rates of ...
Understanding the microscopic mechanisms of new particle formation under acid-rich conditions is of ...
The formation of particles from precursor vapors is an important source of atmospheric aerosol. Rese...
International audienceWe have studied the structure and formation thermodynamics of dimer clusters c...
In the atmosphere, a well-known and conventional pathway toward the formation of ammonium sulfate is...
Protonation, hydration and cluster formation of ammonia, formaldehyde, formic acid, acetone, butanon...
Clusters of water molecules mimic the transition from gas phase to bulk water. Cluster species of th...