A new method for the detection of gas-phase hydroperoxides is described. The clustering chemistry of CF_(3)O^(-) is exploited to produce speciated measurements of several hydroperoxides with high sensitivity and fast time response. Correspondence of airborne observations made with this technique and the established HPLC method is illustrated. CF_(3)O^(-) appears to be a highly versatile reagent ion for measurements of both weak and strong acids in the atmosphere
Proton transfer reactions between hydronium ions (H<sub>3</sub>O<sup>+</sup>) and volatile organic c...
An ion-neutral chemical kinetic model is described and used to simulate the negative ion chemistry ...
Oxygenated volatile organic compounds (OVOCs) are formed during the oxidation of gas-phase hydrocarb...
A chemical ionization mass spectrometry (CIMS) method utilizing a reagent gas mixture of O<sub>2</s...
An HPLC (high-performance liquid chromatography) method was developed to quantify hydrogen peroxide,...
A new approach for measuring gas-phase methyl hydrogen peroxide [(MHP) CH_3OOH] utilizing chemical i...
Hydroxyl and hydroperoxy radicals are key species for the understanding of atmospheric oxidation pro...
A chemical ionization mass spectrometry (CIMS) method utilizing a reagent gas mixture of O2, CO2, an...
The goals of this study were to determine whether formic and acetic acid could be quantified from th...
Hydroxyl and hydroperoxy radicals are key species for the understanding of atmospheric oxidation pro...
The fluorometric gas-phase hydrogen peroxide procedure is based on the technique used by Lazrus et. ...
An ion-neutral chemical kinetic model is described and used to simulate the negative ion chemistry o...
Hydroperoxides are of great importance in the fields of atmospheric and biological chemistry. Howeve...
The goals of this study were to determine whether formic and acetic acid could be quantified from th...
This dissertation describes the development of chemical ionization mass spectrometry (CIMS) instrume...
Proton transfer reactions between hydronium ions (H<sub>3</sub>O<sup>+</sup>) and volatile organic c...
An ion-neutral chemical kinetic model is described and used to simulate the negative ion chemistry ...
Oxygenated volatile organic compounds (OVOCs) are formed during the oxidation of gas-phase hydrocarb...
A chemical ionization mass spectrometry (CIMS) method utilizing a reagent gas mixture of O<sub>2</s...
An HPLC (high-performance liquid chromatography) method was developed to quantify hydrogen peroxide,...
A new approach for measuring gas-phase methyl hydrogen peroxide [(MHP) CH_3OOH] utilizing chemical i...
Hydroxyl and hydroperoxy radicals are key species for the understanding of atmospheric oxidation pro...
A chemical ionization mass spectrometry (CIMS) method utilizing a reagent gas mixture of O2, CO2, an...
The goals of this study were to determine whether formic and acetic acid could be quantified from th...
Hydroxyl and hydroperoxy radicals are key species for the understanding of atmospheric oxidation pro...
The fluorometric gas-phase hydrogen peroxide procedure is based on the technique used by Lazrus et. ...
An ion-neutral chemical kinetic model is described and used to simulate the negative ion chemistry o...
Hydroperoxides are of great importance in the fields of atmospheric and biological chemistry. Howeve...
The goals of this study were to determine whether formic and acetic acid could be quantified from th...
This dissertation describes the development of chemical ionization mass spectrometry (CIMS) instrume...
Proton transfer reactions between hydronium ions (H<sub>3</sub>O<sup>+</sup>) and volatile organic c...
An ion-neutral chemical kinetic model is described and used to simulate the negative ion chemistry ...
Oxygenated volatile organic compounds (OVOCs) are formed during the oxidation of gas-phase hydrocarb...