A recent report found that negative ion atmospheric pressure photoionization (Ni-APPI) and direct analysis in real time (Ni-DART) ionize compounds by electron capture, dissociative electron capture, proton abstraction, and anion adduction. The authors of this report suggested that the common ionization of Ni-APPI and Ni-DART demonstrated that these techniques ionize a wider array of compounds than negative ion atmospheric pressure chemical ionization (Ni-APCI). Here we show that Ni-APCI, using the atmospheric sample analysis probe (ASAP) technique, in the absence of solvent vapors, ionizes the same and similar compounds by the same reported mechanisms. These results are supported by previous publications, which show that each mechanism is a...
In this work a novel method for the generation of negatively charged ions is developed. Most analyte...
In this paper, the effects of solvent flow, dopant flow, and lamp power on proton transfer ionizatio...
The efficiencies of charge exchange reaction in dopant-assisted atmospheric pressure chemical ioniza...
AbstractThe ionization mechanism in the novel atmospheric pressure photoionization mass spectrometry...
The ionization mechanism of negative ion-direct analysis in real time (NI-DART) has been investigate...
To better guide the development of liquid chromatography/electron capture-atmospheric pressure photo...
The ionization mechanism in the novel atmospheric pressure photoionization mass spectrometry (APPI-M...
The ionization mechanism in the novel atmospheric pressure photoionization mass spectrometry (APPI-M...
The ionization mechanism in the novel atmospheric pressure photoionization mass spectrometry (APPI-M...
The ionization mechanism in the novel atmospheric pressure photoionization mass spectrometry (APPI-M...
AbstractThe ionization mechanism in the novel atmospheric pressure photoionization mass spectrometry...
The technique of atmospheric pressure photoionization (APPI) has several advantages over electrospra...
It is demonstrated that spatially resolved mass selected analysis using atmospheric pressure laser i...
Soft X-ray atmospheric pressure photoionization (soft X-ray APPI) as an ionization method in liquid ...
Dopants, as “ionization assisting” chemicals, have been used in different ionization techniques. How...
In this work a novel method for the generation of negatively charged ions is developed. Most analyte...
In this paper, the effects of solvent flow, dopant flow, and lamp power on proton transfer ionizatio...
The efficiencies of charge exchange reaction in dopant-assisted atmospheric pressure chemical ioniza...
AbstractThe ionization mechanism in the novel atmospheric pressure photoionization mass spectrometry...
The ionization mechanism of negative ion-direct analysis in real time (NI-DART) has been investigate...
To better guide the development of liquid chromatography/electron capture-atmospheric pressure photo...
The ionization mechanism in the novel atmospheric pressure photoionization mass spectrometry (APPI-M...
The ionization mechanism in the novel atmospheric pressure photoionization mass spectrometry (APPI-M...
The ionization mechanism in the novel atmospheric pressure photoionization mass spectrometry (APPI-M...
The ionization mechanism in the novel atmospheric pressure photoionization mass spectrometry (APPI-M...
AbstractThe ionization mechanism in the novel atmospheric pressure photoionization mass spectrometry...
The technique of atmospheric pressure photoionization (APPI) has several advantages over electrospra...
It is demonstrated that spatially resolved mass selected analysis using atmospheric pressure laser i...
Soft X-ray atmospheric pressure photoionization (soft X-ray APPI) as an ionization method in liquid ...
Dopants, as “ionization assisting” chemicals, have been used in different ionization techniques. How...
In this work a novel method for the generation of negatively charged ions is developed. Most analyte...
In this paper, the effects of solvent flow, dopant flow, and lamp power on proton transfer ionizatio...
The efficiencies of charge exchange reaction in dopant-assisted atmospheric pressure chemical ioniza...